The group will have its initial kick-off meeting in November, 2024. Fill out the form below ▼ to submit your interest.
Particle methods are a class of numerical techniques that can be used to simulate engineering systems and components by representing the domain as a collection or particles. The particle method approach differs from conventional mesh-based methods (such as the FE method) as the connectivity of particles is not fixed and is dependent on the location of the other particles at any given point in time.
Particle methods have a wide range of applications both in the fluid and structural domain. They offer unique advantages for modeling phenomena that are challenging to address with traditional grid-based methods. They are well suited to simulate systems that undergo large deformation and separation and rupture and are adept at modelling fluid-structure interactions, free-surface and multiphase flows.
Commonly used particle methods include Smoothed Particle Hydrodynamics (SPH), the Material Point Method (MPM) and the Moving Particle Semi-Implict Method (MPS).
Recognising the growing importance of these methods, this group is dedicated to:
Promoting Best Practices. By leveraging the collective expertise of our members, we aim to develop resources that promote the best use of particle methods in engineering applications.
Supporting Education and Knowledge Transfer. We will work to disseminate knowledge to equip the next generation of engineers and researchers with the skills needed to effectively utilise particle methods.
Facilitating Collaboration. We are a platform for open dialogue and exchange of ideas among professionals from industry, academia, and software development.
Please fill out this form for us to be able to get in touch with you, and to have an initial dataset concerning the composition of the group.
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