Optimization Methodology of Thermoelectric Peltier-Modules, for Structural Design and Material Selection, using MCDM and FEM Modelling
Albert, Judit
Takács, Ágnes
2025-09-16T08:32:49Z
2025-09-16T08:32:49Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33705
Monitoring the temperature of medical products is essential, to ensure their safety
and stability. The thermoelectric Peltier-modules can be used for either cooling or heating
in this application. In this work, different geometries are applied and the resulting
performance of the Bi2Te3-based module, characterized via finite element simulations and
materials, is analyzed, where the primary objective was to reduce shear and torque stresses,
which also depends operating conditions. In the first phase, Finite Element Analysis (FEM)
analysis of the thermo-mechanical test unit for the Peltier-modules, is conducted. In the
second phase, the best design concept selection phase, using multi-criteria decision theory
is introduced, where the ranking of the criteria is weighted by the characteristics assigned
to the selected values. The object is to choose the best design concept, from the alternatives
generated during the first phase.
hu_HU
dc.format
PDF
hu_HU
en
hu_HU
Optimization Methodology of Thermoelectric Peltier-Modules, for Structural Design and Material Selection, using MCDM and FEM Modelling
hu_HU
Open access
hu_HU
Óbudai Egyetem
hu_HU
Budapest
hu_HU
Óbudai Egyetem
hu_HU
Műszaki tudományok - multidiszciplináris műszaki tudományok