Heat Transfer Studies on Structured Metal Sheets

J. Egert, K. Fraňa, S. Simon, Steffen Wichmann
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引用次数: 2

Abstract

Unsteady turbulent airflow in a parallel way with a plain and a hexagonal sheet was analyzed numerically and experimentally in order to determine the heat transfer intensity between surfaces of sheets and surrounding airflow. To obtain experimental results for validation of numerical simulations, a measurement facility, composed from aerodynamics tunnel and wire heater, was designed and constructed. The temperature on the sheets was chosen to observe the effects of different surface structures, airflow conditions and input heat power. Results provided by numerical simulations showed good conformity with experimental results. For investigated cases the hexagonal sheet achieved significantly higher heat transfer intensity and lower surface temperature than the plain sheet under the same conditions.
结构金属薄板的传热研究
为了确定平板和六角形平板平行流场的换热强度,对平板和六角形平板平行流场进行了数值和实验分析。为了获得数值模拟验证的实验结果,设计并建造了由空气动力隧道和线加热器组成的测量装置。研究了不同表面结构、气流条件和输入热功率对薄板表面温度的影响。数值模拟结果与实验结果吻合较好。在所研究的情况下,在相同条件下,六角形薄板的传热强度明显高于普通薄板,表面温度明显低于普通薄板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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