Article ID Journal Published Year Pages File Type
646888 Applied Thermal Engineering 2013 8 Pages PDF
Abstract

The heat transfer and pressure drop characteristics of transverse direction (TD) type aluminum serrated fins in compact heat exchanger were studied experimentally and numerically in this paper. Firstly, taken lubricant as working fluid and water as coolant, performance tests were carried out for different flow rates in oil side. Variation in the Colburn factor j and the friction factor f relative to Re were examined. Next to that, the effects of structural parameters on thermal characteristics of TD type serrated fins were analyzed numerically. Through comparison of experimental and simulated results, the tendencies agree well. Finally, the heat transfer enhancement mechanism for TD type serrated fins was discussed by field synergy principle (FSP) theory. It is found that vortexes generated near the TD fin region enhanced the turbulence intensity to reduce the thickness of boundary and improve the synergy between the velocity and temperature gradient.

► Thermal performance of transverse type serrated fins was studied experimentally and numerically. ► Effect of structural parameters on thermal characteristics was analyzed numerically. ► Heat transfer enhancement mechanism was analyzed using field synergy principle. ► The increase of flow turbulence intensity improves the field synergy degree.

Related Topics
Physical Sciences and Engineering Chemical Engineering Fluid Flow and Transfer Processes
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