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Titel:

Target-driven splitting SPH optimization of thermal conductivity distribution

Dokumenttyp:
Zeitschriftenaufsatz
Autor(en):
Zhang, Bo; Zhang, Chi; Hu, Xiangyu
Abstract:
Efficiently enhancing heat conduction through optimized distribution of a limited quantity of high thermal conductivity material is paramount in cooling electronic devices and numerous other applications. This paper introduces a target-driven all-at-once approach for PDE-constrained optimization and derives a splitting smoothed particle hydrodynamics (SPH) method for optimizing the distribution of thermal conductivity in heat conduction problems. In this method, the optimization iteration of the...     »
Stichworte:
Gradient descent method; Heat transfer enhancement; Implicit splitting operator; PDE-constrained optimization; Smoothed particle hydrodynamics; Target-driven approach; Volume-to-point problem
Dewey Dezimalklassifikation:
620 Ingenieurwissenschaften
Zeitschriftentitel:
International Journal of Heat and Mass Transfer
Jahr:
2024
Band / Volume:
227
Seitenangaben Beitrag:
125476
Nachgewiesen in:
Scopus
Sprache:
en
Volltext / DOI:
doi:10.1016/j.ijheatmasstransfer.2024.125476
Verlag / Institution:
Elsevier BV
E-ISSN:
0017-9310
Hinweise:
Funding text The first author would like to acknowledge the financial support provided by the China Scholarship Council (No. 202006230071). C. Zhang and X.Y. Hu would like to express their gratitude to Deutsche Forschungsgemeinschaft(DFG) for their sponsorship of this research under grant number DFG HU1527/12-4. The corresponding code of this work is available on GitHub at https://github.com/Xiangyu-Hu/SPHinXsys.
Eingereicht (bei Zeitschrift):
04.12.2023
Angenommen (von Zeitschrift):
20.03.2024
Publikationsdatum:
01.08.2024
TUM Einrichtung:
Lehrstuhl für Aerodynamik und Strömungsmechanik
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