On Mesh Deformation Techniques for Topology Optimization of Fluid-Structure Interaction Problems

07/09/2021
by   Mohamed Abdelhamid, et al.
0

Fluid-structure interactions are a widespread phenomenon in nature. Although their numerical modeling have come a long way, the application of numerical design tools to these multiphysics problems is still lagging behind. Gradient-based optimization is the most popular approach in topology optimization currently. Hence, it's a necessity to utilize mesh deformation techniques that have continuous, smooth derivatives. In this work, we address mesh deformation techniques for structured, quadrilateral meshes. We discuss and comment on two legacy mesh deformation techniques; namely the spring analogy model and the linear elasticity model. In addition, we propose a new technique based on the Yeoh hyperelasticity model. We focus on mesh quality as a gateway to mesh admissibility. We propose layered selective stiffening such that the elements adjacent to the fluid-structure interface - where the bulk of the mesh distortion occurs - are stiffened in consecutive layers. The legacy and the new models are able to sustain large deformations without deprecating the mesh quality, and the results are enhanced with using layered selective stiffening.

READ FULL TEXT
research
06/19/2020

Mesh deformation techniques in fluid-structure interaction: robustness, accumulated distortion and computational efficiency

An important ingredient of any moving-mesh method for fluid-structure in...
research
08/10/2023

Density-Based Topology Optimization of High-Fidelity Fluid-Structure Interaction Problems with Large Deformations

The application of modern topology optimization techniques to single phy...
research
11/07/2021

The eXtreme Mesh deformation approach (X-MESH) for the Stefan phase-change model

The eXtreme MESH deformation approach is a new method to follow sharp in...
research
09/03/2023

MQENet: A Mesh Quality Evaluation Neural Network Based on Dynamic Graph Attention

With the development of computational fluid dynamics, the requirements f...
research
03/26/2021

A Novel p-Harmonic Descent Approach Applied to Fluid Dynamic Shape Optimization

We introduce a novel method for the implementation of shape optimziation...
research
06/12/2023

Enhanced Floating Isogeometric Analysis

The numerical simulation of additive manufacturing techniques promises t...

Please sign up or login with your details

Forgot password? Click here to reset