首页> 外文会议>ECI International Conference on Boiling Heat Transfer >CONVECTIVE BOILING IN A PARALLEL MICROCHANNEL HEAT SINK WITH A DIVERGING CROSS-SECTION DESIGN AND ARTIFICIAL NUCLEATION SITES
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CONVECTIVE BOILING IN A PARALLEL MICROCHANNEL HEAT SINK WITH A DIVERGING CROSS-SECTION DESIGN AND ARTIFICIAL NUCLEATION SITES

机译:在平行的微通道散热器中的对流沸腾,横截面设计和人工成核遗址

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摘要

To develop a highly stable boiling heat transfer microchannel heat sink, the three types of diverging microchannels, namely Type-1, Type-2 and Type-3, were designed to explore experimentally the effect of different distribution of artificial nucleation sites on enhancing boiling heat transfer in 10 parallel diverging microchannels with a mean hydraulic diameter of 120 (mu)m. The Type-1 system is with no cavities, Type-2 is with cavities distributed uniformly along the downstream half of the channel, while Type-3 is with cavities distributed uniformly along the whole channel. The artificial nucleation sites are laser-etched pits on the channel bottom wall with a mouth diameter of about 20-22 (mu)m based on the heterogeneous nucleation theory. The results of the present study reveal the presence of the artificial nucleation sites for flow boiling in parallel diverging microchannel significantly reduces the wall superheat and enhances the boiling heat transfer performance. Additionally, the Type-3 design demonstrates the best boiling heat transfer performance.
机译:为了开发高度稳定的沸腾热传递微通道散热器,设计了三种类型的发散微通道,即1型,2型和3型,旨在实际探讨不同分布人工成核位点对增强沸腾热的影响在10个平行发散的微通道中传递,平均液压直径为120(mu)。 1型系统没有空腔,型号2是沿着通道的下游均匀分布的空腔,而类型-3是沿整个通道均匀分布的空腔。人造成核位点是基于异质成核理论的沟道底壁上的激光蚀刻凹坑,口径为约20-22(mu)m。本研究的结果揭示了在平行发散的微通道中的流动沸腾的人造成核位点的存在显着降低了壁过热并增强了沸腾的传热性能。此外,3型设计演示了最佳沸腾的传热性能。

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