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首页> 外文期刊>Advances in condensed matter physics >Experimental Study on Liquid Flow and Heat Transfer in Rough Microchannels
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Experimental Study on Liquid Flow and Heat Transfer in Rough Microchannels

机译:粗糙微通道液体流动和热传递的实验研究

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Although roughness is negligible for laminar flow through tubes in classic fluid mechanics, the surface roughness may play an important role in microscale fluid flow due to the large ratio of surface area to volume. To further verify the influence of rough surfaces on microscale liquid flow and heat transfer, a performance test system of heat transfer and liquid flow was designed and built, and a series of experimental examinations are conducted, in which the microchannel material is stainless steel and the working medium is methanol. The results indicate that the surface roughness plays a significant role in the process of laminar flow and heat transfer in microchannels. In microchannels with roughness characteristics, the Poiseuille number of liquid laminar flow relies not only on the cross section shape of the rough microchannels but also on the Reynolds number of liquid flow. The Poiseuille number of liquid laminar flow in rough microchannels increases with increasing Reynolds number. In addition, the Nusselt number of liquid laminar heat transfer is related not only to the cross section shape of a rough microchannel but also to the Reynolds number of liquid flow, and the Nusselt number increases with increasing Reynolds number.
机译:虽然层流通过经典流体力学中的管道粗糙度可以忽略不计,但是由于表面积与体积的大比例,表面粗糙度可能在微观流体流动中发挥重要作用。为了进一步验证粗糙表面对微观液体流动和传热的影响,设计和构建了传热和液体流动性能测试系统,并进行了一系列实验检查,其中微通道材料是不锈钢和工作培养基是甲醇。结果表明,表面粗糙度在微通道中的层流和热传递过程中起着重要作用。在具有粗糙度特性的微通道中,液体层流量不仅依赖于粗糙微通道的横截面形状,而且依靠雷诺数的液体流量。粗糙微通道中液体层流量的Poiseuille数量随着雷诺数的增加而增加。另外,液体层状传热的露珠数不仅与粗糙微通道的横截面形状有关,而且还与雷诺数的液体流量相关,并且尤塞格数随着雷诺数的增加而增加。

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