Smart cloud collocation: geometry-aware adaptivity directly from CAD

10/25/2022
by   Thibault Jacquemin, et al.
0

Computer Aided Design (CAD) is widely used in the creation and optimization of various industrial systems and processes. Transforming a CAD geometry into a computational discretization that be used to solve PDEs requires care and a deep knowledge of the selected computational method. In this article, we present a novel integrated collocation scheme based on smart clouds. It allows us to transform a CAD geometry into a complete point collocation model, aware of the base geometry, with minimum effort. For this process, only the geometry of the domain, in the form of a STEP file, and the boundary conditions are needed. We also introduce an adaptive refinement process for the resultant smart cloud using an a posteriori error indication. The scheme can be applied to any 2D or 3D geometry, to any PDE and can be applied to most point collocation approaches. We illustrate this with the meshfree Generalized Finite Difference (GFD) method applied to steady linear elasticity problems. We further show that each step of this process, from the initial discretization to the refinement strategy, is connected and is affected by the approach selected in the previous step, thus requiring an integrated scheme where the whole solution process should be considered at once.

READ FULL TEXT

page 6

page 14

page 19

page 22

page 23

page 30

page 33

page 39

research
10/05/2018

Integrating CAD and Numerical Analysis: 'Dirty Geometry' handling using the Finite Cell Method

This paper proposes a computational methodology for the integration of C...
research
02/06/2023

A posteriori error estimation for parabolic problems with dynamic boundary conditions

This paper is concerned with adaptive mesh refinement strategies for the...
research
03/15/2022

Locally refined quad meshing for linear elasticity problems based on convolutional neural networks

In this paper we propose a method to generate suitably refined finite el...
research
01/12/2021

PvDeConv: Point-Voxel Deconvolution for Autoencoding CAD Construction in 3D

We propose a Point-Voxel DeConvolution (PVDeConv) module for 3D data aut...
research
11/05/2021

Enforcing essential boundary conditions on domains defined by point clouds

This paper develops and investigates a new method for the application of...
research
06/26/2019

Branched splines

Spline functions have long been used in numerical solution of differenti...
research
06/25/2020

A Protocol to Convert Infrastructure Data from Computer-Aided Design (CAD) to Geographic Information Systems (GIS)

While many municipalities and organizations see value in converting infr...

Please sign up or login with your details

Forgot password? Click here to reset