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首页> 外文期刊>International communications in heat and mass transfer >Investigation of heat transfer enhancement in an enclosure filled with nanofluids using multiple relaxation time lattice Boltzmann modeling
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Investigation of heat transfer enhancement in an enclosure filled with nanofluids using multiple relaxation time lattice Boltzmann modeling

机译:使用多个弛豫时间晶格玻尔兹曼模型研究填充纳米流体的密闭空间内的传热增强

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摘要

This work investigates the heat transfer performance in an enclosure including nanofluids with a localized heat source. The velocity field is solved by multiple relaxation time lattice Boltzmann modeling (MRT) which has superior numerical advantages to single relaxation time lattice Boltzmann modeling (SRT); however, heat transfer is simulated separately using SRT-lattice Bottzmann modeling. The hydrodynamics and thermal fields are then coupled together using the Boussinesq approximation. The main objective of this study is to investigate the influence of several pertinent parameters such as Rayleigh number, solid particle volume fraction of nanoparticles, and the geometry as well as location of the localized heat source on the heat transfer performance of nanofluids. The results obtained from lattice Boltzmann modeling clearly indicate that heat transfer augmentation is possible using nano-fluids in comparison to conventional fluids, resulting in the compactness of many industrial devices.
机译:这项工作研究了在包含具有局部热源的纳米流体的外壳中的传热性能。速度场通过多重弛豫时间格子玻尔兹曼模型(MRT)求解,其数值优​​势优于单一弛豫时间格子玻尔兹曼模型(SRT)。但是,可以使用SRT-lattice Bottzmann模型分别模拟传热。然后使用Boussinesq逼近将流体动力学和热场耦合在一起。这项研究的主要目的是研究几个相关参数,如瑞利数,纳米颗粒的固体颗粒体积分数,几何形状以及局部热源的位置,对纳米流体的传热性能的影响。从格子Boltzmann模型获得的结果清楚地表明,与常规流体相比,使用纳米流体可以增加传热,从而导致许多工业设备的紧凑性。

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