首页> 外文会议>International Conference on Integration and Commercialization of Micro and Nanosystems; 20070110-13; Sanya(CN) >A STUDY FOR FLOW CHARACTERISTICS OF LIQUID SLIP FLOW IN RECTANGULAR MICROCHANNELS
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A STUDY FOR FLOW CHARACTERISTICS OF LIQUID SLIP FLOW IN RECTANGULAR MICROCHANNELS

机译:矩形微通道内液体滑流的流动特性研究

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摘要

Nowadays, there has been great interest in micro- and nano-applications. Understanding the flow and heat transfer in microscale is useful. The primary goal of this investigation is to reveal the flow behavior in microchannels. The deionized water flow in a microchannel was experimentally investigated. The pressure drops were measured under the conditions of different Reynolds numbers. The friction factors were obtained based on the experimental measurements. The friction factors deviate significantly from the conventional theory. A series of numerical simulation was also carried out to explore the mechanism of the deviation in the present paper. The numerical simulation adopting the slip boundary condition shows the numerical results coincide with the experimental results very well. The velocity slip was obtained based on the comparison with the experimental results. By introducing the slip length L_s, the velocity slip of water flow in the microchannel can be characterized. The velocity slip increases with the increase of the inlet velocity and the slip length increases with the increase of the shear rate. The linear Navier boundary condition breaks down when the shear rate reaches a critical value. A correlation between the velocity slip and the inlet velocity based on our experimental measurements and numerical results was obtained.
机译:如今,人们对微米和纳米应用产生了极大的兴趣。了解微观尺度的流动和热传递是有用的。这项研究的主要目的是揭示微通道中的流动行为。实验研究了去离子水在微通道中的流动。在不同雷诺数的条件下测量压降。基于实验测量值获得摩擦系数。摩擦系数与传统理论有很大差异。本文还进行了一系列数值模拟,探讨了偏差的机理。采用滑移边界条件的数值模拟表明数值结果与实验结果非常吻合。通过与实验结果的比较获得速度滑移。通过引入滑动长度L_s,可以表征微通道中水流的速度滑动。速度滑移随入口速度的增加而增加,滑移长度随剪切速率的增加而增加。当剪切速率达到临界值时,线性Navier边界条件破裂。根据我们的实验测量和数值结果,获得了速度滑移和入口速度之间的相关性。

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