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首页> 外文期刊>Journal of Nanostructures >Investigation of Brownian Motion of CuO-Water Nanofluid in a Porous Cavity with Internal Heat Generation by Using of LTNE Model
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Investigation of Brownian Motion of CuO-Water Nanofluid in a Porous Cavity with Internal Heat Generation by Using of LTNE Model

机译:利用LTNE模型研究CuO-水纳米流体在具有内部发热的多孔腔中的布朗运动。

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摘要

In this paper, the effect of the Brownian term in natural convection of CuO-Water nanofluid inside a partially filled porous cavity, with internal heat generation has been studied. It is assumed that the viscosity and thermal conductivity of nanofluid consists of a static part and a Brownian part of which is a function of temperature and the volume fraction of nanofluid. Because of internal heat generation, the two-equation model is used to separately account for the local solid matrix and nanofluid temperatures. To study the effect of Brownian term various parameters such as the Rayleigh number, volume fraction of nanofluid, porosity of the porous matrix, and conductivity ratio of porous media is examined and the flow and heat fields are compared to the results of non-Brownian solution. The results show that Brownian term reduces nanofluid velocity and make smoother streamlines and increasing the thermal conductivity leads to cooling of porous material and achieving more Nusselt. Also the greatest impact of Brownian term is in low-porosity, low Rayleigh or small thermal conductivity of the porous matrix. In addition, mounting the porous material increases the Brownian effect and heat transfer performance of nanofluid but increasing porosity up to 0.8 reduces this effect.
机译:在本文中,研究了布朗项对部分填充的多孔腔内部的CuO-水纳米流体自然对流以及内部生热的影响。假设纳米流体的粘度和热导率由静态部分和布朗部分组成,布朗部分是温度和纳米流体的体积分数的函数。由于内部产生热量,因此使用两方程模型分别考虑局部固体基质和纳米流体温度。为了研究布朗项的影响,检查了诸如瑞利数,纳米流体的体积分数,多孔基质的孔隙率和多孔介质的电导率等各种参数,并将流场和热场与非布朗溶液的结果进行了比较。结果表明,布朗项降低了纳米流体的速度,使流线更平滑,导热系数的增加导致多孔材料的冷却并获得了更多的Nusselt。布朗术语的最大影响还在于多孔基质的低孔隙率,低瑞利或低导热率。此外,安装多孔材料可提高布朗效应和纳米流体的传热性能,但将孔隙率提高到0.8则可降低这种效应。

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