首页> 外文会议>4th international conference on microanoscale heat and mass transfer 2013 : Microanofluidics and Lab-on-a-chip ... >NUMERICAL STUDY OF NANOFLUIDS FLOW CHARACTERISTICS USING LES-LAGRANGE METHOD AND MOLECULAR DYNAMICS SIMULATION
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NUMERICAL STUDY OF NANOFLUIDS FLOW CHARACTERISTICS USING LES-LAGRANGE METHOD AND MOLECULAR DYNAMICS SIMULATION

机译:莱斯-拉格朗日法和分子动力学模拟对纳米流体流动特性的数值研究

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摘要

In order to reveal the mechanisms of heat transfer enhancement in nanofluids from the flow characteristics, this paper firstly used LES (Large eddy simulation)-Lagrange method to simulate the turbulent flow of nanofluids through a straight circular tube. It has been observed that nanoparticles would move up and down and sideways besides main flowing. The turbulent characteristics of nanofluids have been changed greatly in comparison with pure water: the turbulent intensity and Reynolds stress are enhanced obviously; there are more vortexes in the flow field. These flow characteristics of nanofluids can effectively strengthen the transport of momentum, mass and energy, which is the main reason for heat transfer enhancement in nanofluids. It is also found that nanofluids containing smaller diameter nanoparticles have higher turbulent intensity and flow activity. The flow characteristics of nanofluids are sensitive to the changes of smaller diameter nanoparticle size. While using different nanoparticle materials, the flow characteristics of nanofluids have a little change. At last, to verify the aforesaid views, the flow behaviors of nanofluids in the near wall region and main flow region have been simulated by molecular dynamics.
机译:为了从流动特性中揭示出纳米流体传热增强的机理,本文首先采用LES(大涡模拟)-Lagrange方法来模拟纳米流体通过直管的湍流。已经观察到,除了主要流动之外,纳米粒子还将上下移动和侧向移动。与纯水相比,纳米流体的湍流特性发生了很大变化:湍流强度和雷诺应力显着增强;流场中有更多的涡旋。纳米流体的这些流动特性可以有效地增强动量,质量和能量的传输,这是纳米流体中传热增强的主要原因。还发现包含较小直径的纳米颗粒的纳米流体具有较高的湍流强度和流动活性。纳米流体的流动特性对直径较小的纳米颗粒的变化敏感。当使用不同的纳米颗粒材料时,纳米流体的流动特性几乎没有变化。最后,为了验证上述观点,通过分子动力学模拟了纳米流体在近壁区域和主流区域的流动行为。

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