...
首页> 外文期刊>Micromachines >Analysis and Optimization of a Microchannel Heat Sink with V-Ribs Using Nanofluids for Micro Solar Cells
【24h】

Analysis and Optimization of a Microchannel Heat Sink with V-Ribs Using Nanofluids for Micro Solar Cells

机译:使用纳米流体的微型太阳能电池用V型肋微通道散热器的分析和优化

获取原文

摘要

It is crucial to control the temperature of solar cells for enhancing efficiency with the increasing power intensity of multiple photovoltaic systems. In order to improve the heat transfer efficiency, a microchannel heat sink (MCHS) with V-ribs using a water-based nanofluid as a coolant for micro solar cells was designed. Numerical simulations were carried out to investigate the flows and heat transfers in the MCHS when the Reynolds number ranges from 200 to 1000. The numerical results showed that the periodically arranged V-ribs can interrupt the thermal boundary, induce chaotic convection, increase heat transfer area, and subsequently improve the heat transfer performance of a MCHS. In addition, the preferential values of the geometric parameters of V-ribs and the physical parameters of the nanofluid were obtained on the basis of the Nusselt numbers at identical pump power. For MCHS with V-ribs on both the top and bottom wall, preferential values of V-rib are rib width d / W = 1 , flare angle α = 75 ° , rib height h r / H = 0.3 , and ratio of two slant sides b / a = 0.75 , respectively. This can provide sound foundations for the design of a MCHS in micro solar cells.
机译:至关重要的是,随着多个光伏系统功率强度的增加,控制太阳能电池的温度以提高效率。为了提高传热效率,设计了一种带有V型肋的微通道散热器(MCHS),该肋使用水基纳米流体作为微型太阳能电池的冷却剂。进行了数值模拟,研究了雷诺数在200至1000之间时MCHS中的流动和传热。数值结果表明,周期性排列的V型肋可以中断热边界,引起混沌对流,增加传热面积,从而提高了MCHS的传热性能。此外,在相同的泵浦功率下,基于努塞尔数获得了V型肋的几何参数的优先值和纳米流体的物理参数。对于在顶壁和底壁上均带有V型肋的MCHS,V型肋的优先值为肋宽d / W = 1,扩口角度α= 75°,肋高hr / H = 0.3和两个斜边之比b / a分别为0.75。这可以为微型太阳能电池中MCHS的设计提供坚实的基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号