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Salazar De Troya, Miguel

Publications and source records attributed to Salazar De Troya, Miguel.

Mesh independency in topology optimization

The topology optimization community has regularly employed optimization algorithms from the operations research community. However, these algorithms are implemented in the sequence space l2 instead of the proper function space where the design variable resides. In this software, we benchmark the mesh independent implementation of pyMMAopt with three common problems in topology optimization. We show how the volume fraction variable discretization on non-uniform meshes affects the convergence of l2 based optimization algorithms and how pyMMAopt successfully achieves mesh independent convergence.

Salazar De Troya, Miguel↗

Method of Moving Asymptotes Optimization Algorithm in Python

Python implementation of the Method of Moving Asymptotes optimization algorithm described in[Svanberg, K., The method of moving asymptotes- a new method for structural optimization. International journal for numerical methods in engineering, 1987. 24(2): p.359 (https://onlinelibrary.wiley.com/doi/abs/10.1002/nme.1620240207). Originally implemented in[GetDP](https://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=717799) [project](https://gitlab.onelab.info/getdp/getdp), although it has been deleted in their repository.

Salazar De Troya, Miguel↗

Level set topology optimization in Firedrake

Lestofire is an academic software for the automated design of engineering components. It finds the optimal geometry of a system to minimize a given cost function while constrained by a given set of physics equations. Using a level set function to describe the geometry, lestofire uses shapes derivative to evolve the system until its optimal shape. It leverages the compilation of variational forms in Firedrake (https://www.firedrakeproject.org/) and the automated calculation of shape derivatives via pyadjoint (http://www.dolfin-adjoint.or/en/latest/) to allow fast prototyping of different physics, cost functions and design parametrizations.

Salazar De Troya, Miguel↗