Mehrdad Mesgarpour
Papers
1
Total Citations
17
H-Index
1
About
Mehrdad Mesgarpour’s research centers on thermal management and heat transfer enhancement, with a particular focus on liquid-cooled systems for high-performance electronics. His most notable contribution is the novel design of a liquid-cooled heat sink inspired by constructal theory—a principle that optimizes flow architectures for maximum efficiency. In his landmark 2022 study, Mesgarpour combined numerical simulations with experimental validation to investigate how boundary conditions, such as mass flow rate, affect heat transfer rate and pressure drop. Using five cylinder heater cartridges to simulate processor heat loads, he demonstrated that constructal-based designs can significantly improve cooling performance while maintaining manageable pressure losses. This work has already garnered 17 citations, reflecting its growing influence in the field of electronics cooling. Mesgarpour’s research bridges theoretical optimization and practical engineering, offering scalable solutions for next-generation processors. His findings are particularly relevant for industries requiring compact, high-efficiency thermal systems, such as data centers and electric vehicles. By advancing constructal theory in applied thermal engineering, Mesgarpour continues to shape sustainable cooling technologies for increasingly powerful electronic devices.
Research Focus
Key Achievements
Top Papers
- 1