Generated by All in One SEO v5.0.1.1, this is an llms.txt file, used by LLMs to index the site. # RBF Morph CAE Project ## Sitemaps - [XML Sitemap](https://www.rbfcae.com/sitemap.xml): Contains all public & indexable URLs for this website. ## Posts - [News](https://www.rbfcae.com/blog/) - [Articulation of THUMS through Reduced-Order Models](https://www.rbfcae.com/articulation-of-thums-through-reduced-order-models/) - Author: S. Stazi Università di Roma Tor Vergata I 2026 I English You can download the presentation and the thesis. - [New Master's Thesis Demonstrates the Potential of the rbfCAE Platform for Human Body Model Articulation](https://www.rbfcae.com/new-masters-thesis-demonstrates-the-potential-of-the-rbfcae-platform-for-human-body-model-articulation/) - We are pleased to highlight a new Master's thesis developed at the University of Rome Tor Vergata that showcases the application of the rbfCAE platform to advanced biomechanics and reduced-order modeling. Entitled "Articulation of THUMS through Reduced-Order Models," the thesis was carried out by Samuele Stazi under the supervision of Prof. Marco Evangelos Biancolini and - [A Framework for the Analysis of the Coupled Aerodynamic-Dynamic Response of a Vehicle: An OpenFOAM Approach](https://www.rbfcae.com/a-framework-for-the-analysis-of-the-coupled-aerodynamic-dynamic-response-of-a-vehicle-an-openfoam-approach/) - Download the paper presented the 21st OpenFOAM Workshop. Paper by A. Zanella, F. Caccia, L. Abergo, E. Serioli, A. Guardone. - [rbfCAE Technology Featured at the 21st OpenFOAM Workshop](https://www.rbfcae.com/rbfcae-technology-featured-at-the-21st-openfoam-workshop/) - We are pleased to announce that the work entitled "A Framework for the Analysis of the Coupled Aerodynamic-Dynamic Response of a Vehicle: An OpenFOAM Approach" will be presented on July 2, 2026, by Alice Zanella at the 21st OpenFOAM Workshop, taking place in Porto, Portugal. The contribution presents a computational framework for the coupled simulation - [ENGYS Partners with RBF Morph to Deliver Advanced Shape Morphing and FSI Capabilities via rbfCAE](https://www.rbfcae.com/engys-partners-with-rbf-morph-to-deliver-advanced-shape-morphing-and-fsi-capabilities-via-rbfcae/) - ENGYS is pleased to announce a new partnership with RBF Morph, bringing the advanced capabilities of the rbfCAE software to engineers seeking faster and more efficient design exploration, optimisation and simulation workflows. Built on Radial Basis Function (RBF) technology, rbfCAE features high-fidelity mesh morphing, shape optimisation, fluid-structure interaction (FSI), reduced-order modelling (ROM), and virtual reality - [Advancing Real-Time CAE Optimization at the Symposium on Modelling and Engineering Simulation 2026](https://www.rbfcae.com/advancing-real-time-cae-optimization-at-the-symposium-on-modelling-and-engineering-simulation-2026/) - Prof. Marco Evangelos Biancolini, Associate Professor of Machine Design at the University of Rome Tor Vergata and founder of RBF Morph, will be delivering a keynote at the Symposium on Modelling and Engineering Simulation 2026, held at SUPSI – Campus EST in Lugano, Switzerland, on 10 February 2026. His presentation, Geometry Intelligence and Fast RBF - [RBF Morph Brings a New Level of Speed and Integration to CAD–CFD Aerodynamic Design](https://www.rbfcae.com/rbf-morph-brings-a-new-level-of-speed-and-integration-to-cad-cfd-aerodynamic-design/) - A recent thesis by our colleague Davide Zambon at Università Ca’ Foscari Venezia explores a new approach to accelerating aerodynamic design through the integration of Radial Basis Function (RBF) technologies directly within Autodesk Alias. The work, titled “Acceleration of the Aerodynamic Design Workflow: A Plugin for Alias Based on Radial Basis Functions,” demonstrates how geometric - [Acceleration of the Aerodynamic Design Workflow: A Plugin for Alias Based on Radial Basis Functions](https://www.rbfcae.com/acceleration-of-the-aerodynamic-design-workflow-a-plugin-for-alias-based-on-radial-basis-functions/) - Author: D. Zambon Università Ca' Foscari Venezia I 2025 I Italian Use the link to download the thesis. - [Forthcoming F4E Workshop on Metrology and Reverse Engineering](https://www.rbfcae.com/forthcoming-f4e-workshop-on-metrology-and-reverse-engineering/) - As the date approaches for the Metrology and Reverse Engineering Workshop organized by Fusion for Energy (F4E), preparations are intensifying for the online session to be held on 5 December 2025. The RBF Morph team is pleased to contribute to this event, which aims to facilitate advanced discussion on emerging methodologies and practical applications in - [Presentation Now Available: “Interactive Reduced Order Models for Ship Hull Design and Optimization” at COMPIT 2025](https://www.rbfcae.com/presentation-now-available-interactive-reduced-order-models-for-ship-hull-design-and-optimization-at-compit-2025/) - We are pleased to announce that the presentation corresponding to our paper co-authored with ENGYS, “Interactive Reduced Order Models for Ship Hull Design and Optimization”, presented at COMPIT 2025, is now available for download on our website. The 23rd Conference on Computer Applications and Information Technology in the Maritime Industries (COMPIT 2025), held in Pontignano, - [COMPIT 2025](https://www.rbfcae.com/compit-2025/) - Use the link below to download the presentation: Presentation: “Interactive Reduced Order Models for Skip Hull Design and Optimization Coupling an Open-Source CFD Tool with Advanced RBF Mesh Morphing” - [RBF Morph 2025 Webinar with the Avicenna Alliance](https://www.rbfcae.com/12828-2/) - Use the link below to download the presentation: Presentation: “Real-Time Medical Digital Twins: Geometry, Simulation, and Immersive Interaction” - [Integration within Fluid Dynamic Solvers of an Advanced Geometric Parameterization Based on Mesh Morphing](https://www.rbfcae.com/integration-within-fluid-dynamic-solvers-of-an-advanced-geometric-parameterization-based-on-mesh-morphing-2/) - Download the article published on MDPI, Section Fluids, September 2022 Paper by U. Cella, D. Patrizi, S. Porziani, T. Virdung, M. E. Biancolini - [Computational Simulation of Shape Memory Polymer Structures via Finite Elements and Mesh Morphing](https://www.rbfcae.com/computational-simulation-of-shape-memory-polymer-structures-via-finite-elements-and-mesh-morphing/) - Download the article published in Smart Materials and Structures, July 2025 Paper by C. Groth, A. Chiappa, M. E. Biancolini, G. Scalet - [Interactive Reduced Order Models for Ship Hull Design and Optimization](https://www.rbfcae.com/interactive-reduced-order-models-for-ship-hull-design-and-optimization/) - Download the paper presented at COMPIT 2025 Paper by E. Costa, B. Di Paolo, A. Krassas, P. Geremia, C. Groth, M. E. Biancolini, M. Camponeschi, U. Cella, E, Di Meo - [Aerodynamics optimization of a rear-camera by CFD analysys and mesh morphing](https://www.rbfcae.com/aerodynamics-optimization-of-a-rear-camera-by-cfd-analysys-and-mesh-morphing/) - Author: L.D’Anastasio University of Rome Tor Vergata I 2024 I Italian Use the links to download the presentation or thesis. Use this link to download the presentation in English. - [Multiphysics Optimization of an Exhaust Port Using Mesh Morphing](https://www.rbfcae.com/multiphysics-optimization-of-an-exhaust-port-using-mesh-morphing/) - Author: E. Benso University of Rome Tor Vergata I 2022 I Italian Use the links to download the presentation and the thesis. - [Advanced Methods for Automatic Shape Optimization of Road Vehicles Driven by RBF Mesh Morphing](https://www.rbfcae.com/advanced-methods-for-automatic-shape-optimization-of-road-vehicles-driven-by-rbf-mesh-morphing-2/) - Author: D. Patrizi University of Rome Tor Vergata I 2020 I English Use the links to download the presentation and the thesis. - [Optimization of an Automotive Cooling System Through CFD and Advanced Mesh Morphing Techniques](https://www.rbfcae.com/optimization-of-an-automotive-cooling-system-through-cfd-and-advanced-mesh-morphing-techniques/) - Author: A. Contursi University of Rome Tor Vergata I 2024 I Italian Use the links to download the presentation and the thesis. - [ENGYS UGM 2023](https://www.rbfcae.com/engys-ugm-2023/) - Use the link below to download the presentation: Presentation: Empowering Automotive External Aerodynamics Using Advanced RBF Mesh Morphing Methods - [ENGYS UGM 2024](https://www.rbfcae.com/engys-ugm-2024/) - Use the link below to download the presentation: Presentation: Interactive Sculpting and FSI with the rbfCAE Platform - [𝐑𝐢𝐮𝐧𝐢𝐨𝐧𝐞 𝐏𝐥𝐞𝐧𝐚𝐫𝐢𝐚 𝐒𝐩𝐨𝐤𝐞 9 𝐢𝐍𝐄𝐒𝐓 2025](https://www.rbfcae.com/𝐑𝐢𝐮𝐧𝐢𝐨𝐧𝐞-𝐏𝐥𝐞𝐧𝐚𝐫𝐢𝐚/) - Use the link below to download the presentation: Presentation: 𝐑𝐎𝐌𝐞𝐝2𝐕𝐑 – 𝐀𝐝𝐯𝐚𝐧𝐜𝐢𝐧𝐠 𝐌𝐞𝐝𝐢𝐜𝐚𝐥 𝐃𝐢𝐠𝐢𝐭𝐚𝐥 𝐓𝐰𝐢𝐧𝐬 𝐰𝐢𝐭𝐡 𝐕𝐑 - [NAFEMS World Congress 2025](https://www.rbfcae.com/nafems-world-congress-2025/) - Use the link below to download the presentation: Presentation: Integrated Multi-Physics Optimization of Automotive Road Wheels Using Advanced Mesh Morphing - [The Avicenna Alliance Webinar Featuring RBF Morph 2025](https://www.rbfcae.com/the-avicenna-alliance-webinar-featuring-rbf-morph-2025/) - Our second RBF Morph webinar hosted and organized by the Avicenna Alliance was a success. On November 11, 2025, the webinar "Real-Time Medical Digital Twins: Geometry, Simulation, and Immersive Interaction" featured Marco Evangelos Biancolini, Founder of RBF Morph, who explored how real-time medical Digital Twins are transforming healthcare. The session examined the integration of geometry, - [Pushing the Boundaries of Ship Design: Our COMPIT 2025 Paper with ENGYS Now Available](https://www.rbfcae.com/pushing-the-boundaries-of-ship-design-our-compit-2025-paper-with-engys-now-available/) - We are pleased to announce that the paper we co-authored with ENGYS, titled “Interactive Reduced Order Models for Ship Hull Design and Optimization,” and presented at COMPIT 2025, is now available for download on our website. The 23rd Conference on Computer Applications and Information Technology in the Maritime Industries (COMPIT 2025) took place in the - [New publication in Smart Materials and Structures](https://www.rbfcae.com/new-publication-in-smart-materials-and-structures/) - We are pleased to announce the publication of our open access article “Computational simulation of shape memory polymer structures via finite elements and mesh morphing” in Smart Materials and Structures. Shape-memory polymers (SMPs) are an important class of smart materials, able to recover a permanent shape after being deformed into a temporary configuration under external - [rbfCAE featured in Futurities Magazine: a breakthrough collaboration with ENGYS, Nissan, and the University of Rome Tor Vergata](https://www.rbfcae.com/rbfcae-featured-in-futurities-magazine-a-breakthrough-collaboration-with-engys-nissan-and-the-university-of-rome-tor-vergata/) - We are proud to announce that our new platform rbfCAE has been featured in the July issue of Futurities Magazine, marking a significant milestone for our technology and its integration into next-generation automotive design workflows. The article, titled “Smarter wheels: How multi-physics optimization is shaping the future of automotive design,” highlights the results of a - [Smarter wheels: How multi-physics optimization is shaping the future of automotive design](https://www.rbfcae.com/smarter-wheels-how-multi-physics-optimization-is-shaping-the-future-of-automotive-design/) - Published in Futurities, July 2025 issue Download the PDF - [RBF Presented Cutting-Edge RBF Mesh Morphing at Engys UGM 2023](https://www.rbfcae.com/rbf-presented-cutting-edge-rbf-mesh-morphing-at-engys-ugm-2023/) - Marco Evangelos Biancolini, CTO and founder of RBF Morph, was among the distinguished speakers at the Engys UGM 2023 conference in Frankfurt, Germany, from October 23 to 25, 2023. The event gathered industry leaders, researchers, and engineers to discuss the latest advancements in computational fluid dynamics (CFD) and simulation technologies. During his presentation, Biancolini introduced - [Advanced rbfCAE Technology at Engys UGM 2024](https://www.rbfcae.com/our-founder-showcased-advanced-rbfcae-technology-at-engys-ugm-2024/) - From October 23 to 25, 2024, Marco Evangelos Biancolini, CTO and founder of RBF Morph, participated as a speaker at the Engys User Group Meeting (UGM) 2024 in Weybridge, England. The event brought together leading experts in computational fluid dynamics (CFD) and simulation-driven engineering to discuss the latest advancements in digital design and optimization. Biancolini’s - [Explore Your Future in Mechanical Engineering – Digital Experience Event](https://www.rbfcae.com/explore-your-future-in-mechanical-engineering-digital-experience-event/) - Are you ready to discover what it truly means to be a mechanical engineer? Join us for the Digital Experience event, a special afternoon dedicated to exploring the Master’s Degree in Mechanical Engineering at the University of Rome Tor Vergata. This orientation event, scheduled for May 30, 2025, from 2:00 PM to 4:00 PM at - [rbfCAE Showcased at NAFEMS World Congress 2025: Advancing Multi-Physics Optimization for Automotive Design](https://www.rbfcae.com/rbfcae-showcased-at-nafems-world-congress-2025-advancing-multi-physics-optimization-for-automotive-design/) - The NAFEMS World Congress 2025, held in Salzburg, Austria, concluded with compelling discussions and demonstrations at the intersection of simulation and artificial intelligence. Among the highlights was a presentation by Professor Marco Evangelos Biancolini, founder of RBF Morph, introducing the capabilities of the newly launched rbfCAE platform. Presentation: "Integrated Multi-Physics Optimization of Automotive Road Wheels - [RBF at NAFEMS World Congress 2025 – Unveiling the Future of Simulation with rbfCAE](https://www.rbfcae.com/rbf-at-nafems-world-congress-2025-unveiling-the-future-of-simulation-with-rbfcae/) - The NAFEMS World Congress 2025 is the premier independent, international conference dedicated exclusively to engineering simulation. Taking place from May 19–22 in Salzburg, Austria, this four-day event brings together professionals, researchers, and enthusiasts to explore the latest advancements in simulation technologies. Attendees can expect over 300 technical presentations, interactive workshops, training courses, and the most - [𝐑𝐎𝐌𝐞𝐝2𝐕𝐑 𝐚𝐭 𝐭𝐡𝐞 𝐑𝐢𝐮𝐧𝐢𝐨𝐧𝐞 𝐏𝐥𝐞𝐧𝐚𝐫𝐢𝐚 𝐒𝐩𝐨𝐤𝐞 9 𝐢𝐍𝐄𝐒𝐓 – 𝐀𝐝𝐯𝐚𝐧𝐜𝐢𝐧𝐠 𝐌𝐞𝐝𝐢𝐜𝐚𝐥 𝐃𝐢𝐠𝐢𝐭𝐚𝐥 𝐓𝐰𝐢𝐧𝐬 𝐰𝐢𝐭𝐡 𝐕𝐑](https://www.rbfcae.com/𝐑𝐎𝐌𝐞𝐝2𝐕𝐑-𝐚𝐭-𝐭𝐡𝐞-𝐑𝐢𝐮𝐧/) - On February 13, 2025, at SISSA, Trieste (Italy), the ROMed2VR team showcased their innovative work at the Riunione Plenaria Spoke 9 iNEST. This event highlighted the projects selected under the “Bandi a Cascata Spoke 9”, bringing together key players in medical simulation, computational modeling, and virtual reality. Representing InSilicoTrials, Vincenzo Carbone, PhD presented how Reduced - [RBF Morph Supports ROMed2VR: Advancing Virtual Reality and Reduced Order Models for Pre-Surgical Planning](https://www.rbfcae.com/rbf-morph-supports-romed2vr-advancing-virtual-reality-and-reduced-order-models-for-pre-surgical-planning/) - RBF Morph is contributing to ROMed2VR, a research initiative designed to enhance pre-surgical planning for congenital heart defects by integrating Computational Fluid Dynamics (CFD) and Virtual Reality (VR). This project aims to establish a streamlined computational workflow that leverages Reduced Order Models (ROM) to improve the precision and effectiveness of the Modified Blalock-Taussig Shunt procedure. - [Revolutionizing Automotive Cooling System Design Through CFD and Mesh Morphing](https://www.rbfcae.com/revolutionizing-automotive-cooling-system-design-through-cfd-and-mesh-morphing/) - Andrea Contursi's thesis, "Optimization of an Automotive Cooling System Through CFD and Advanced Mesh Morphing Techniques", developed at the University of Rome Tor Vergata under the supervision of Prof. Marco Evangelos Biancolini, presents an innovative approach to optimizing automotive cooling systems through the use of computational fluid dynamics (CFD) and advanced mesh morphing techniques. The - [Optimization of the Aerodynamics of a Rear Camera through CFD Analysis and Mesh Morphing](https://www.rbfcae.com/optimization-of-the-aerodynamics-of-a-rear-camera-through-cfd-analysis-and-mesh-morphing/) - Dive into the world of aerodynamics with Lorenzo D’Anastasio’s groundbreaking thesis: “Optimization of the Aerodynamics of a Rear Camera through CFD Analysis and Mesh Morphing.” The thesis was carried out as part of a collaboration between University of Rome Tor Vergata, ENGYS, Volvo and RBF. Lorenzo’s work delves deep into Computational Fluid Dynamics (CFD) analysis, utilizing - [Automated Aerodynamic Optimization of Road Vehicles Using RBF Mesh Morphing](https://www.rbfcae.com/advanced-methods-for-automatic-shape-optimization-of-road-vehicles-driven-by-rbf-mesh-morphing/) - We are pleased to present the Master's thesis of Daniele Patrizi, discussed at the University of Rome Tor Vergata, which explores a novel automatic design exploration workflow for road vehicle aerodynamics. This research leverages RBF Morph to streamline shape optimization, integrating a high-fidelity CFD solver with a meshless morphing approach. Key aspects of the methodology - [Multiphysics Optimization of an Exhaust Port Using Mesh Morphing, a Thesis by Enrico Benso](https://www.rbfcae.com/multiphysics-optimization-of-an-exhaust-port-using-mesh-morphing-a-thesis-by-enrico-benso/) - We are pleased to highlight the work of Enrico Benso, whose thesis at the University of Rome Tor Vergata explores an innovative workflow for the optimization of internal combustion engine (ICE) exhaust ports in a flow bench scenario. This research integrates Computational Fluid Dynamics (CFD) and Finite Element Analysis (FEA) in an automated Design of - [Exclusive Wired Interview: Our Founder Unveils the Future of Medical Digital Twins](https://www.rbfcae.com/exclusive-wired-interview-our-founder-unveils-the-future-of-medical-digital-twins/) - We are thrilled to announce that Wired Italia has just published a fantastic interview featuring our founder, Marco Evangelos Biancolini, who dives deep into the future of medical digital twins and the groundbreaking work being done as part of the EU-funded MeDiTATe project. In this exclusive interview, Marco shares insights into how RBF Morph is pushing the boundaries - [Digital Twin for Medicine: The Remarkable Case of Aortic Aneurysm](https://www.rbfcae.com/digital-twin-for-medicine-the-remarkable-case-of-aortic-aneurysm/) - A hemodynamic testbed, using 3D printing and ultrasound, replicates the physiological and pathological conditions of those with an aortic aneurysm: we explored the prospects of the digital twin with Marco Evangelos Biancolini, coordinator of the EU Meditate project. Building physical and digital twins of the circulatory system is no longer science fiction: by combining 3D - [Hardware Upgrade Interview on RBF Morph’s Digital Twin and Simulation Revolution](https://www.rbfcae.com/hardware-upgrade-interview-on-rbf-morphs-digital-twin-and-simulation-revolution/) - Check out the fascinating interview with Marco Evangelos Biancolini, founder of RBF Morph, featured on Hardware Upgrade, titled “RBF Morph: Digital Twin and Simulation at the Service of Automotive, Aerospace, Naval, Medical, and More”. In this in-depth conversation, Biancolini delves into how RBF Morph’s cutting-edge digital twin technology is revolutionizing industries such as motorsport, aerospace, and healthcare. - [RBF Morph: Digital Twin and Simulation Serving Automotive, Aerospace, Naval, Medical Sectors, and More](https://www.rbfcae.com/rbf-morph-digital-twin-and-simulation-serving-automotive-aerospace-naval-medical-sectors-and-more/) - An interview with Marco Evangelos Biancolini, founder of RBF Morph and professor of machine design at the University of Tor Vergata in Rome, to discover how the company's digital twins support industries such as motorsports, aerospace, and healthcare. Digital twins and simulations are key topics in many industrial sectors, starting with the world of automotive - [Integration within Fluid Dynamic Solvers of an Advanced Geometric Parameterization Based on Mesh Morphing](https://www.rbfcae.com/integration-within-fluid-dynamic-solvers-of-an-advanced-geometric-parameterization-based-on-mesh-morphing/) - Published on MDPI in September 2022. Download the PDF ## Pages - [Home rbfCAE](https://www.rbfcae.com/) - UNLEASH THE POWER OF MESH MORPHING A NEW WAY TO OPTIMIZE YOUR PRODUCT'S PERFORMANCE Discover More Scroll Down Slide BackgroundUNLEASH THE POWER OF MESH MORPHINGA NEW WAY TO OPTIMIZE YOUR PRODUCT'S PERFORMANCE Discover More How We Can Help Develop Your Ideas How We Can Help Develop Your Ideas 01 Define your idea 02 Develop your - [rbfADJOINT](https://www.rbfcae.com/rbfadjoint/) - The rbfADJOINT module enables fast interactive post-processing of adjoint solutions, allowing engineers to analyze sensitivity maps and optimize shapes efficiently. It reads adjoint sensitivities from CAE solvers, visualizing them as colored maps over surface meshes to identify critical regions for optimization. A real-time dashboard within the UI provides instant feedback on the impact of shape - [rbfVR](https://www.rbfcae.com/rbfvr/) - The rbfVR module provides an immersive virtual reality (VR) experience, enabling users to interact with digital twins using devices such as Meta Quest 3 and Apple Vision Pro. It imports FMUs generated by rbfROM, along with surface meshes and interactive handles, creating a real-time collaborative environment. This allows engineers to visualize and manipulate CAE models - [rbfROM](https://www.rbfcae.com/rbfrom/) - The rbfROM module enables the creation and interaction with static reduced-order models (ROMs), significantly accelerating CAE simulations. It automates the data sampling, compression, and model generation process, using Proper Orthogonal Decomposition (POD) to reduce computational complexity. ROMs of both mesh deformation and CAE results are stored as Functional Mock-up Units (FMUs), allowing real-time shape and - [Our rbfCAE Technology](https://www.rbfcae.com/our-rbfcae-technology/) - The aim of the rbfCAE technology is to enable fast mesh morphing through a mesh-independent approach based on state-of-the-art Radial Basis Function (RBF) techniques. This technology allows CAE users to perform shape modifications that are compatible with the mesh topology directly during the solving stage, simply by adding a single command line to the input - [rbfAI](https://www.rbfcae.com/rbfai/) - Smart AI Solutions for ROM and Virtual RealityrbfAI introduces an advanced artificial intelligence framework that transforms reduced-order modeling (ROM) and virtual reality (VR) applications in engineering. By integrating AI-driven predictive capabilities with cutting-edge simulation techniques, rbfAI enables the creation of fast and accurate surrogate models, dramatically reducing computational costs while maintaining high precision. With seamless - [rbfCONNECT](https://www.rbfcae.com/rbfconnect/) - Seamless Integration for CAE SimulationsrbfCONNECT is a comprehensive set of connectors designed to bridge RBF-based simulation workflows with a wide range of open-source CAE solvers. Built for maximum compatibility, rbfCONNECT facilitates effortless data exchange and automation across solvers, preprocessing tools, and optimization platforms. By resolving interoperability issues, they empower engineers to apply advanced mesh morphing - [Projects](https://www.rbfcae.com/projects/) - SafeBot4Twin SafeBot4Twin is an innovative project that combines cybersecurity and artificial intelligence to enable safe… Read More PANDORA PANDORA is an EU‑funded initiative charting a new course for cardiovascular surgery… Read More ROMed2VR ROMed2VR is an initiative focused on advancing pre-surgical planning for congenital heart defects… Read More LESSICE The LESSICE project represents a significant - [Contact](https://www.rbfcae.com/contact/) - Get In Touch Your Name and Surname Your Company Your Email Subject Your message (optional) Do you need support? For questions regarding our products and services please contact us at info@rbf-morph.com For questions regarding technical support please contact us at support@rbf-morph.com Follow Us Linkedin Youtube X-twitter Facebook - [About Us](https://www.rbfcae.com/about/) - RBF Morph is a pioneer in providing cutting-edge, reliable and high-performance mesh morphing technology for CAE multiphysics modeling and digital twin design. Since 2007 our dedicated team of engineers and experts in computer simulation has been key to creating innovative and unique solutions that can optimise any product’s shape, increasing mechanical and aerodynamic performances, while - [Case Studies](https://www.rbfcae.com/case-studies/) - Automotive Le Mans Prototype Car Read More Machinery Components Optimization of Industrial Parts Read More Energy Update of CAE Models Read More Medical Mandible Morphing Read More Aerospace Aircraft Design Optimization Read More Automotive Optimization of an Automotive Wheel Rim Read More Automotive Optimization of a Motorbike Windshield Read More Automotive MIRA Reference Car Read - [An Accurate, Extensive, and Rapid Method for Aerodynamics Optimization: The 50:50:50 Method](https://www.rbfcae.com/an-accurate-extensive-and-rapid-method-for-aerodynamics-optimization-the-505050-method/) - Aerodynamics development is all about trade-offs, striking the right balance between styling needs and aerodynamic concerns. Nearly all major automotive and truck manufacturers use computational fluid dynamics (CFD) during the development process to evaluate aerodynamic drag of proposed vehicle designs. Typically, R&D teams analyze about 50 to 500 different vehicle shape variants in the time available - [Shape optimization of the MIRA Reference CAR](https://www.rbfcae.com/shape-optimization-of-the-mira-reference-car/) - Automobile industry is facing the great challenge of energy conservation and emission reduction. It’s necessary to do some researches on some surface components of a car body to find out which of them may affect aerodynamic drag remarkably. This will help an aerodynamic engineer modify an initial car model more clearly. We also hope to - [Industrial Application of the Meshless Morpher RBF Morph to a Motorbike Windshield Optimisation](https://www.rbfcae.com/industrial-application-of-the-meshless-morpher-rbf-morph-to-a-motorbike-windshield-optimisation/) - Variotouring windshield introduced in 2002 by the German company MRA to control the shape of the flux that acts on the driver. The aim of the variotouring is to control the fluxes path to limit the annoyance thanks to a special shape of the screen and an adjustable deflector. The system acts as a flux - [Aircraft design optimization by means of Radial Basis Functions mesh morphing](https://www.rbfcae.com/aircraft-design-optimization-by-means-of-radial-basis-functions-mesh-morphing/) - This study has been conducted within a Research partnership, active since 2009, between Piaggio Aero Industries and University of Rome Tor Vergata. The collaboration was addressed to the solution of the aeroelastic problem, using the RBF Morph mesh morphing software, and recently extended to shape optimization methods.A wind tunnel model of a business class aircraft in - [Cookie Policy (UE)](https://www.rbfcae.com/cookie-policy-ue/) - [middle layer API, Python scripting and automation](https://www.rbfcae.com/middle-layer-api-python-scripting-and-automation/) - RBF Morph Structures is an ACT extension of RBF Morph which allows for shape optimization studies entirely within ANSYS Mechanical and ANSYS Workbench by morphing an existing mesh. Optimise shapes by morphing existing trusted meshes An ACT Extension powered by the RBF Morph’s high-performance numerical engine with full support of ANSYS Mechanical.This new add-on has - [Unity UI](https://www.rbfcae.com/unity-ui/) - RBF Morph Structures is an ACT extension of RBF Morph which allows for shape optimization studies entirely within ANSYS Mechanical and ANSYS Workbench by morphing an existing mesh. Optimise shapes by morphing existing trusted meshes An ACT Extension powered by the RBF Morph’s high-performance numerical engine with full support of ANSYS Mechanical.This new add-on has - [rbf4Star](https://www.rbfcae.com/rbf4star/) - RBF Morph Fluids is an add-on which allows for shape optimization studies entirely within ANSYS Fluent by morphing an existing mesh. Optimise shapes by morphing existing trusted meshes This new approach takes advantage of the ANSYS Fluent’s CFD technology and overcomes the limits of the mainstream methods by introducing these functionalities through the implementation of - [rbf4Nastran](https://www.rbfcae.com/rbf4nastran/) - RBF Morph Fluids is an add-on which allows for shape optimization studies entirely within ANSYS Fluent by morphing an existing mesh. Optimise shapes by morphing existing trusted meshes This new approach takes advantage of the ANSYS Fluent’s CFD technology and overcomes the limits of the mainstream methods by introducing these functionalities through the implementation of - [rbf4Converge](https://www.rbfcae.com/rbf4converge/) - RBF Morph Fluids is an add-on which allows for shape optimization studies entirely within ANSYS Fluent by morphing an existing mesh. Optimise shapes by morphing existing trusted meshes This new approach takes advantage of the ANSYS Fluent’s CFD technology and overcomes the limits of the mainstream methods by introducing these functionalities through the implementation of - [rbfROC](https://www.rbfcae.com/rbfroc/) - The rbfROC module features an advanced connection with the OpenCascade engine. It allows CAD based actions in two possible directions. CAD2MESH allows to provide as input iso-topological variations of a geometry as step files or as brep files. The rbfROC CAD2MESH allows to create a field capable to morph the underlying mesh of the baseline - [rbfCAE Platform](https://www.rbfcae.com/rbfcae/) - Revolutionizing Engineering SimulationrbfCAE Platform is an advanced simulation environment that redefines the engineering design process by integrating cutting-edge mesh morphing technology. It facilitates seamless shape optimization, parametric studies, and real-time simulation updates, enhancing both speed and accuracy. With an intuitive interface and exceptional computational efficiency, rbfCAE Platform empowers engineers to develop, test, and refine complex - [Use of RBF Morph mesh morphing for the estimation of airfoil performances in presence of ice profiles](https://www.rbfcae.com/use-of-rbf-morph-mesh-morphing-for-the-estimation-of-airfoil-performances-in-presence-of-ice-profiles/) - Flying in icing atmospheric conditions can be a serious safety problem. Ice build-up generally occurs when supercooled droplets impinge on aircraft surfaces, most commonly the engine and the windward face of the wings, causing a variation in the overall vehicle fluid dynamics.Ice accretions can increase the drag force and decrease the lifting characteristics of the - [Workshop HPC Industry 4.0@Cineca](https://www.rbfcae.com/workshop-hpc-industry-4-0cineca/) - RBF Morph took part in the Workshop HPC for Industry 4.0@Cineca that was held in Doria Gran Hotel Milan (MI) 21-23 May, 2019.The aim of the workshop was to present state-of-the-art Industry 4.0 technologies. In particular, here were presented methods and techniques that might be used to transform a manufacturing plant into a plant 4.0.The workshop was organized around five - [RBF Stand Alone](https://www.rbfcae.com/rbf-stand-alone/) - The Stand Alone version of RBF Morph has been conceived to generalize the usage of this technology to allow its utilization – whenever mesh nodes data are reachable and modifiable in some manner – no matter the numerical solver.It is supplied with a customizable GUI based on the CGNSplot technology and, since this product shares - [Support Maintenance and Customizations](https://www.rbfcae.com/support-maintenance-and-customizations/) - Thanks to its reliable and long standing experience as a consolidated team, RBF Morph offers outstanding technical expertise in support its mesh morphing-based solutions, so delivery of comprehensive support, as well as consistent solutions personalized to customers’ specific requirements, are guaranteed.RBF Morph develops and sells several commercial software products running according to the RBF mesh-morphing approach, through our specialized technical team, we - [Structural optimization of an automotive wheel rim through an RBF mesh morphing technique](https://www.rbfcae.com/structural-optimization-of-an-automotive-wheel-rim-through-an-rbf-mesh-morphing-technique/) - Structural optimization is a method commonly employed by designers to realize better products as soon as possible. In the present work the aim is to arrange the material distribution of a structure in order to get the minimum weight and to prevent the risk of mechanical failure during its functioning. There are several ways to - [Sails trim optimisation using cfd and rbf mesh morphing](https://www.rbfcae.com/sails-trim-optimisation-using-cfd-and-rbf-mesh-morphing/) - This study has been conducted within a research partnership, between University of Rome Tor Vergata and Newcastle University.The study is focused on the use of mesh morphing to explore different trims of yachts sails. In particular, four trims of the fore and aft sail of a model-scale sailing yacht were modelled leading to 16 configurations - [RBF-based aerodynamic optimization of an industrial glider](https://www.rbfcae.com/rbf-based-aerodynamic-optimization-of-an-industrial-glider/) - The present study is addressed to the improvement of the aerodynamic design of an industrial glider flying at Mach 0.08.Taurus glider, designed and manufactured by Pipistrel d.o.o. Ajdovščina Slovenia is a side-by-side two-seat self-launching ultra-light glider made out of composite materials. The wing is located in a vertical central position respect to the fuselage, whilst - [RBF – MORPH FSI Activity: motorsport application Indy Car](https://www.rbfcae.com/rbf-morph-fsi-activity-motorsport-application-indy-car/) - RBF Morph can speed up your design with several examples of internal and external flow. A specific example of usage of RBF Morph in motor sport will be given by Dallara with examples on the Indy Car IR5.In this study, we have parameterized a CFD model for complex shape change directly from the RBF-Morph solution, to pair - [Optimization of Industrial Parts by Mesh Morphing-Enabled Automatic Shape Sculpting](https://www.rbfcae.com/optimisation-of-industrial-parts-by-mesh-morphing-enabled-automatic-shape-sculpting/) - Radial basis functions (RBF) mesh morphing is a well established approach to quickly update an existing finite element analysis (FEA) mesh so that new shapes can be adapted and related performances explored. The RBF in fact allow to adapt the volume mesh maintaining a good quality even for substantial changes of the shape. New shapes - [Optimization of a ship hull](https://www.rbfcae.com/optimization-of-a-ship-hull/) - Resistance is one of the important areas that has to be taken into account in ship hull development.An interesting possibility is to combine a CFD method and a mathematical optimization method together with a program for hull form variation. This system can then be used to find a hull form that is optimized with respect - [Presentation given at Workshop HPC for Industry 4.0@Cineca is now available to download](https://www.rbfcae.com/presentation-given-at-workshop-hpc-for-industry-4-0cineca-is-now-available-to-download/) - RBF Morph took part in the Workshop HPC for Industry 4.0@Cineca that was held in Doria Gran Hotel Milan (MI) 21-23 May, 2019. The aim of the workshop was to present state-of-the-art Industry 4.0 technologies. In particular, here were presented methods and techniques that might be used to transform a manufacturing plant into a plant 4.0. The workshop was organized - [Presentation given at the ANSYS Innovation User Conference 2019 is now available to download](https://www.rbfcae.com/presentation-given-at-the-ansys-innovation-user-conference-2019-is-now-available-to-download/) - RBF Morph took part in the ANSYS Innovation User Conference and Workshop 2019 which was held on May, 22th and 23th in Coventry (UK). Our work titled “High Performance RBF Mesh Morphing Solutions to Face Typical Aerospace Problems” presents an overview on the feature of RBF Morph and provides a set of examples of application - [Marine and Nautical](https://www.rbfcae.com/marine-and-nautical/) - Marine industry is driven by the needs for reduced manufacturing and operating costs, shorter product development cycles and design improvements. Such exigent scenarios pave way for innovative product engineering.CFD analysis can optimize ship hull design, sail shape and propeller blades. Analysis predicts water free surface around the ship hull which helps to accomplish optimal hull - [Energy](https://www.rbfcae.com/energy/) - Electricity production from renewable resources, efficient energy production, and optimization of energy consumption, emission reduction and introduction of modern highly efficient technologies belongs are among the priorities of the RBF Morph team. Numerical simulation has a huge potential to be one of the essential tools for the development of new innovative solutions for energy production - [Medical](https://www.rbfcae.com/medical/) - Engineering applications involving biological fluids have highly transversal requirements in terms of domain definition from clinical images, complex flow conditions, fluid rheological properties, structure motion and deformation, visualization and post-processing of the results. For these reasons, and thanks to the enormous developments of computational sciences, a computer-aided–engineering workflow seems to be a possible elective environment - [Motorsport](https://www.rbfcae.com/motorsport/) - In our competitive global society, successful and economical design of automotive and industrial structures is crucial. Optimizing the geometry of individual pieces of complex machines improves performance and efficiency of the entire device. Shape optimization problems are typically solved by minimizing the cost function, a mathematical formula that predicts the losses (or ‘cost’) corresponding with - [Multiphysics Numerical Investigation on the Aeroelastic Stability of a Le Mans Prototype Car](https://www.rbfcae.com/multiphysics-numerical-investigation-on-the-aeroelastic-stability-of-a-le-mans-prototype-car/) - In this joint work with Dallara “Multiphysics numerical investigation on the aeroelastic stability of a Le Mans Prototype car” the flutter analysis of the front wing splitter mounted on the 2001 Le Mans Prototype car by Dallara (LMP1) is presented.In the analysis and design of racing competition cars, numerical tools allow to investigate a wide - [Mandible morphing through principal components analysis](https://www.rbfcae.com/mandible-morphing-through-principal-components-analysis/) - A study conducted by University of Perugia in collaboration with University of Catania and Politecnico di Torino having title Mandible morphing through principal components analysis is focused on the creation of a parametric model of the mandibular bone, with the final aim of setting up a valid tool for the creation of patient-specific morphologies, as an alternative - [Electronics](https://www.rbfcae.com/electronics/) - Driving Innovation: Mesh Morphing Solutions for the Electronics and Electric Industries Explore the future of electronics and e-motors components design with the integration of mesh morphing technology. At our core, we don’t just provide software; we offer tailored solutions. We understand the complexities of specific industrial challenges and aim to solve them through the seamless - [Ansys RBF Morph Fluids](https://www.rbfcae.com/rbf-morph-fluids/) - RBF Morph Fluids is an add-on which allows for shape optimization studies entirely within ANSYS Fluent by morphing an existing mesh. Optimise shapes by morphing existing trusted meshes This new approach takes advantage of the ANSYS Fluent’s CFD technology and overcomes the limits of the mainstream methods by introducing these functionalities through the implementation of - [Ansys RBF Morph Structures](https://www.rbfcae.com/rbf-morph-structures/) - RBF Morph Structures is an ACT extension of RBF Morph which allows for shape optimization studies entirely within ANSYS Mechanical and ANSYS Workbench by morphing an existing mesh. Optimise structures by morphing existing trusted meshes An ACT Extension powered by the RBF Morph’s high-performance numerical engine with full support of ANSYS Mechanical.This new add-on has - [Automotive](https://www.rbfcae.com/automotive/) - Aerodynamics development is all about trade-offs, striking the right balance between styling needs and aerodynamic concerns. Nearly all major automotive and truck manufacturers use computational fluid dynamics (CFD) during the development process to evaluate aerodynamic drag of proposed vehicle designs. The analysis results shed considerable light on the impact of styling choices on aerodynamic performance, - [Aerospace](https://www.rbfcae.com/aerospace/) - Today, all the modern manufacturing enterprises are striving to develop the best optimized, reduced weight and cost effective products that meet the intended design functionality and reliability. In this scenario, structural optimization tools like topology and shape optimization with manufacturing simulations are becoming attractive in product design processes.These tools also in help reducing product development - [CAEUp – Update of CAE models on actual manufactured shapes](https://www.rbfcae.com/caeup-update-of-cae-models-on-actual-manufactured-shapes/) - CAEUp aims at implementing a cloud-based software tool whose core is the comparison of the structural performances between the CAE model relative to the nominal design of a certain product and the digital twin of the real product as built.The digital twin is updated on HPC cloud infrastructure and the performance prediction recomputed adopting a variation - [A CFD-based wing sail optimisation method coupled to a VPP](https://www.rbfcae.com/a-cfd-based-wing-sail-optimisation-method-coupled-to-a-vpp/) - An aerodynamic optimisation procedure for an AC72 wing sail was developed. It includes a RANS solver and a VPP.The boat performance is maximised identifying the optimum values of a set of parameters defying the wing trim. In particular, a four degrees of freedom equilibrium equation system is solved for a prescribed wing geometry, providing the - [A virtual test bench for hemodynamic evaluation of aortic cannulation in cardiopulmonary bypass](https://www.rbfcae.com/a-virtual-test-bench-for-hemodynamic-evaluation-of-aortic-cannulation-in-cardiopulmonary-bypass/) - Cardiopulmonary bypass (CPB) is a common practice in cardiac surgery. In this technique, venous blood is directed from the venous system to a heart-lung machine and then returned to the aorta through an inserted arterial cannula. Among the perioperative and postoperative complications, a reduction of cerebral perfusion, resulting in neurological complications, is observed, linked to - [ANSYS Innovation User Conference 2019](https://www.rbfcae.com/ansys-innovation-user-conference-2019/) - RBF Morph took part in the ANSYS Innovation User Conference and Workshop 2019 which was held on May, 22th and 23th in Coventry (UK).Our work titled “High Performance RBF Mesh Morphing Solutions to Face Typical Aerospace Problems” presents an overview on the feature of RBF Morph and provides a set of examples of application examples - [Research](https://www.rbfcae.com/research/) - [Theses and Dissertations](https://www.rbfcae.com/theses-and-dissertations/) - 2024 Theses and dissertations 2024 Click to Browse 2023 Theses and dissertations 2023 Click to Browse 2022 Theses and dissertations 2022 Click to Browse 2021 Theses and dissertations 2021 Click to Browse 2019 Theses and dissertations 2019 Click to Browse 2018 Theses and dissertations 2018 Click to Browse 2017 Theses and dissertations 2017 Click to - [All Industries](https://www.rbfcae.com/all-industries/) - Automotive Aerodynamics development is all about trade-offs, striking the right balance between styling needs… Read More Aerospace Today, all the modern manufacturing enterprises are striving to develop the best optimized, reduced… Read More Marine and nautical Marine industry is driven by the needs for reduced manufacturing and operating costs, shorter… Read More Energy Electricity production - [Awards](https://www.rbfcae.com/awards/) - AIAS 2021 Software Simulation AwardThe RBF Morph team and the University of “Rome” Tor Vergata win the “Software Simulation Award” at the Italian Conference AIAS 2021 with the video “Analysis of vortex induced vibration of thermowell by high fidelity FSI numerical simulation analysis based on RBF structural modes embedding“.A FSI approach based on modes superposition is proposed and implemented - [Partnerships](https://www.rbfcae.com/partnerships/) - ENGYSRBF is expanding its partnership with ENGYS by activating extended support for the HELYX and ELEMENTS software. We support morphing for optimizations including geometrical parameters, working with Adjoint, and performing transient analyses. This is a technical partnership aimed at ensuring that the integration with ENGYS solvers facilitates advanced simulations. SIEMENSRBF expands its compatibility with SIEMENS - [Privacy Policy](https://www.rbfcae.com/privacy-policy/) - RBF Morph's Privacy Policy PRIVACY POLICYLast updated July 08, 2024This privacy notice for RBF Morph ("we," "us," or "our"), describes how and why we might collect, store, use, and/or share ("process") your information when you use our services ("Services"), such as when you:Visit our website at https://www.rbfcae.com/, or any website of ours that links to - [Testimonials](https://www.rbfcae.com/testimonials/) - State-of- the- art morphing technology available with seamless integration to the ANSYS FLUENT community. Send Your Message How to Contact Us Write to us info@rbfcae.com Our Location Via Antonio Rosmini, 4, 00040 Monte Compatri RM - [Team & Vision](https://www.rbfcae.com/team-and-vision/) - RBF Morph is a pioneer in providing cutting-edge, reliable and high-performance mesh morphing technology for CAE multiphysics modeling and digital twin design. Since 2007 our dedicated team of engineers and experts in computer simulation has been key to creating innovative and unique solutions that can optimise any product’s shape, increasing mechanical and aerodynamic performances, while ## Services - [SafeBot4Twin](https://www.rbfcae.com/services/safebot4twin/) - SafeBot4TwinSafeBot4Twin is an innovative project that combines cybersecurity and artificial intelligence to enable safe, user-friendly interaction with Medical Digital Twins (MDTs). Developed by RBF Morph and LivGemini within the Cyber 4.0 ecosystem, the project addresses the dual challenge of protecting sensitive patient data and making advanced simulation tools accessible to non-expert users in healthcare.Medical Digital - [LESSICE](https://www.rbfcae.com/services/lessice/) - LESSICEThe LESSICE project (Multiscale LES Simulation for In-Flight ICE Accretion Simulation) represents a significant advancement in the computational modeling of ice formation on aircraft surfaces. Led by a consortium that includes the Centro Italiano Ricerche Aerospaziali (CIRA), HIT09, and RBF Morph, the project is part of the Spoke 6 initiative within the Sapienza CN1 research program (CUP B83C22002940006).In-flight ice accretion is a critical - [DigiPAD](https://www.rbfcae.com/services/digipad/) - DigiPADThe EU-funded DigiPAD project (Digital Twin for Advanced Design in the Aerospace Industry) represents a transformative effort to enhance the precision and efficiency of preliminary aircraft design. Launched in May 2024, the 15-month initiative was a collaboration between RBF Morph and SmartUp Engineering, two organizations renowned for their expertise in numerical simulation and optimization tools. By - [PANDORA](https://www.rbfcae.com/services/pandora/) - PANDORAPANDORA (Pre-operative Assistant Based on Data-Driven Approaches for Vascular Grafts Surgery) is a business experiment financed by the European project Fortissimo Plus charting a new course for cardiovascular surgery through patient‑specific digital twins of the aorta.Fusing AI‑driven image analysis with high‑fidelity, in‑silico simulations, the project enables surgeons to try different grafts and operative strategies in a virtual - [DiTAiD](https://www.rbfcae.com/services/ditaid/) - DiTAiD DiTAiD (Digital Twin for Airflow and Drug Delivery in Human Airways) was an experiment. CFD can be used to assess airflow and improve the efficiency of inhaled drug delivery in human lungs. However, presently this requires patient-specific simulations which can be both costly and time-consuming.The objective of the experiment was to reduce the time scales - [COPERNICUS](https://www.rbfcae.com/services/copernicus/) - CopernicusThe Copernicus project (Cloud-Based HPC Platform to Support Systemic-Pulmonary Shunting Procedures) targeted congenital heart diseases (CHDs).Congenital heart diseases account for nearly one-third of all congenital birth defects. Without the ability to alter the prevalence of CHDs, interventions and resources must be focused to improve survival and quality of life. The Modified Blalock Taussig Shunt (mBTS) - [MeDiTATe Project](https://www.rbfcae.com/services/meditate-project/) - MeDiTATe ProjectMeDiTATe (The medical digital twin for aneurysm prevention and treatment) aimed to develop state-of-the-art image based medical Digital Twins of cardiovascular districts for a patient-specific prevention and treatment of aneurysms.The Individual Research Projects of the 14 ESRs are defined across five research tracks:(1) High fidelity CAE multi-physics simulation with RBF mesh morphing (FEM, CFD, FSI, - [Fortissimo 2](https://www.rbfcae.com/services/fortissimo-2/) - Fortissimo 2 Fortissimo 2 (Cross-Solver Cloud-Based Tool for Aeronautical FSI Applications) was a successor of Fortissimo project and it continued to address the adoption of next generation ICT advances in the manufacturing domain. At the core of Fortissimo 2 were three tranches of Application Experiments (~35 in total).A key feature of Fortissimo 2 was the adoption - [Spinner](https://www.rbfcae.com/services/spinner/) - Spinner The Spinner Project (Next Generation Spine Experts) was a doctoral training programme aimed at Bioengineering early stage researchers, to train bioengineers to be in a position to design the next generation of repair materials and techniques for spine surgery. Spinner brought together partners from the biomaterials (Finceramica), implantable devices (Aesculap), and computational modelling (Ansys, Adagos) industries with - [RBF2CAD](https://www.rbfcae.com/services/rbf2cad/) - RBF2CAD The mesh-morphing technology that is used in computer-aided design (for changing the shape of a meshed surface while preserving the topology) is advancing. It is used today in many applications, from special effects on film sets to scientific visualisations.Technical designers working with computer-aided design today need optimisation for each one of their models with computer-aided - [RIBES](https://www.rbfcae.com/services/ribes/) - RIBES A common strategy to model the Fluid Structure Interaction (FSI) mechanisms is to couple the fluid dynamic solution, obtained by CFD tools, with structural solvers in an iterative process.The European “RIBES” research project, funded within the 7th framework programme (aeronautics and air transport), was focused on the improvement of the accuracy of CFD-CSM based aeroelastic - [Fortissimo](https://www.rbfcae.com/services/fortissimo/) - Fortissimo Fortissimo (Cloud-Based Additive Manufacturing) is a collaborative project that enables European SMEs to be more competitive globally through the use of simulation services running on a High Performance Computing cloud infrastructure.The project is coordinated by the University of Edinburgh and involves 45 partners including Manufacturing Companies, Application Developers, Domain Experts, IT Solution Providers and HPC - [Cloudi Facturing](https://www.rbfcae.com/services/cloudi-facturing/) - CloudiFacturing CloudiFacturing – Cloudification of Production Engineering for Predictive Digital Manufacturing – was funded in October 2017 and is a European innovation action undertaken in conjunction with the “Factories of the Future (FoF) Initiative”.The mission of CloudiFacturing was to optimize production processes and producibility using Cloud/HPC-based modeling and simulation, leveraging online factory data and advanced data - [ROMed2VR](https://www.rbfcae.com/services/romed2vr/) - ROMed2VR ROMed2VR – Virtual Reality Empowed by Computational Fluid Dynamics Reduced-Order Models to Support Pre-Surgery Medical Planning – is a pioneering initiative focused on advancing pre-surgical planning for congenital heart defects by combining the power of Computational Fluid Dynamics (CFD) and Virtual Reality (VR). By developing a fast, reliable computational workflow based on open-source CFD and ## Categories - [News](https://www.rbfcae.com/category/news/) - [Press](https://www.rbfcae.com/category/press/) - [Theses and Dissertations](https://www.rbfcae.com/category/theses-and-dissertations/) - [Presentations and Proceedings](https://www.rbfcae.com/category/presentations-and-proceedings/) - [Scientific Papers](https://www.rbfcae.com/category/scientific-papers/) ## Service Categories - [projects](https://www.rbfcae.com/services-cat/projects/)