Thermoelastic topology optimization with design-dependent convection
A formulation for designing structures whose heat-exchange boundary evolves with the material distribution.
- Thermoelasticity
- Convection
- Optimization
SANTIAGO, CHILE · AVAILABLE TO COLLABORATE
I design and assess structures, and develop finite-element models, computational tools, and optimization algorithms for complex engineering problems.
12+
Years in practice
03
Integrated fields
C1
Academic English
RESEARCH
Three research lines connect thermoelasticity, optimization, and variational methods.
A formulation for designing structures whose heat-exchange boundary evolves with the material distribution.
An extension that studies how temperature and structural response evolve under time-dependent thermal loading.
A mathematical framework linking material, stiffness, and performance, with verified gradients and controlled design length scale.
SERVICES
Professional experience and computational tools applied to non-routine engineering problems.
Design, assessment, and strengthening of buildings, bridges, electrical infrastructure, and hydraulic works, backed by more than a decade of professional practice.
Finite-element models, automated engineering workflows, and custom algorithms for non-routine engineering problems.
Courses, tutoring, and mentoring in structural dynamics, seismic design, energy dissipation, and computational mechanics.
BLOG
A compact derivation of the coupled problem, its physical interpretation, and the decisions that matter in a finite-element implementation.
Let’s discuss structures, numerical modeling, or technical education.