Model Hierarchy for the Shape Optimization of a Microchannel Cooling System

Fuente: arXiv
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Autores principales: Blauth, Sebastian, Leithäuser, Christian, Pinnau, René
Formato: Preprint
Publicado: 2019
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author Blauth, Sebastian
Leithäuser, Christian
Pinnau, René
author_facet Blauth, Sebastian
Leithäuser, Christian
Pinnau, René
contents We model a microchannel cooling system and consider the optimization of its shape by means of shape calculus. A three-dimensional model covering all relevant physical effects and three reduced models are introduced. The latter are derived via a homogenization of the geometry in 3D and a transformation of the three-dimensional models to two dimensions. A shape optimization problem based on the tracking of heat absorption by the cooler and the uniform distribution of the flow through the microchannels is formulated and adapted to all models. We present the corresponding shape derivatives and adjoint systems, which we derived with a material derivative free adjoint approach. To demonstrate the feasibility of the reduced models, the optimization problems are solved numerically with a gradient descent method. A comparison of the results shows that the reduced models perform similarly to the original one while using significantly less computational resources.
format Preprint
id arxiv_https___arxiv_org_abs_1911_06819
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle Model Hierarchy for the Shape Optimization of a Microchannel Cooling System
Blauth, Sebastian
Leithäuser, Christian
Pinnau, René
Optimization and Control
Numerical Analysis
49Q10, 65K05, 35Q35, 76D55
We model a microchannel cooling system and consider the optimization of its shape by means of shape calculus. A three-dimensional model covering all relevant physical effects and three reduced models are introduced. The latter are derived via a homogenization of the geometry in 3D and a transformation of the three-dimensional models to two dimensions. A shape optimization problem based on the tracking of heat absorption by the cooler and the uniform distribution of the flow through the microchannels is formulated and adapted to all models. We present the corresponding shape derivatives and adjoint systems, which we derived with a material derivative free adjoint approach. To demonstrate the feasibility of the reduced models, the optimization problems are solved numerically with a gradient descent method. A comparison of the results shows that the reduced models perform similarly to the original one while using significantly less computational resources.
title Model Hierarchy for the Shape Optimization of a Microchannel Cooling System
topic Optimization and Control
Numerical Analysis
49Q10, 65K05, 35Q35, 76D55
url https://arxiv.org/abs/1911.06819