Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
4991008 | Applied Thermal Engineering | 2017 | 23 Pages |
Abstract
Total thermal resistance (TTR) is the main index to weigh the heat transfer capability of the pin-fins channel heat sink (PFCHS). The structural parameters and operational parameters of the PFCHS are important factors to influence the TTR of PFCHS. With the goal of achieving the lowest TTR of the PFCHS and modeling the relationship between the parameters and TTR, the structure of the PFCHS is illustrated in detail. Then, we schedule the experimental plan for the PFCHS based on the uniform design (UD), where the width of PFCHS, height of pin-fins, pressure drop of the fluid and power of the heat source are defined as the control parameters. According to the experimental data, a regression model is obtained to describe the relation between the control parameters and TTR, and then the optimal combination of the control parameters is determined. Verification tests show that the effectivity of the optimal parameters and the validity of the regression model.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Fluid Flow and Transfer Processes
Authors
Jun Yang, Lei Li, Liying Yang, Jiaqiang Li,