结构参数对不锈钢板式热沉流动传热性能影响的仿真研究

Simulation of the effect of structural parameters on flow and heat transfer of stainless steel plate heat sink

  • 摘要: 为研究不锈钢板式热沉的结构参数对其流动传热性能的影响,进一步提升其换热效率,利用ANSYS软件建立了与真实结构较为一致而流道高度、焊点直径及焊点排布方式各不相同的热沉几何模型,并利用Fluent软件进行数值模拟。结果表明:在流速相等的条件下,较大的流道高度H和较小的焊点直径D会使热沉的流阻下降,温度均匀性提升,从而改善热沉的传热性能;当供液压力足够时,对于焊点排布方式分别为矩形和菱形的热沉,尽管后者的流阻相对更大,但同时也拥有更高的温度均匀性。以上研究结果可为不锈钢板式热沉结构的设计与优化提供参考。

     

    Abstract: In order to study the effect of structural parameters of the stainless steel plate heat sink on its flow and heat transfer performance to improve the heat exchange efficiency, the software ANSYS was used to establish a geometric model of the heat sink that was consistent with the real structure but with different flow path height, solder joint diameter and solder joint arrangement. The software Fluent was used to conduct the numerical simulation. The results show that, under the equal flow velocity, larger flow path height H and smaller solder joint diameter D would reduce the flow resistance of the heat sink and improve the temperature uniformity, thereby improving the heat transfer of the heat sink. When the liquid supply pressure is sufficient, for the heat sinks whose solder joint arrangements are rectangular and rhombic, although the latter’s flow resistance is relatively larger, it had higher temperature uniformity. The research may provide a reference for the structural design and optimization of the stainless steel plate heat sink.

     

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