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首页> 外文期刊>International communications in heat and mass transfer >Numerical modeling of natural convection in an open cavity with two vertical thin heat sources subjected to a nanofluid
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Numerical modeling of natural convection in an open cavity with two vertical thin heat sources subjected to a nanofluid

机译:带有纳米流体的两个垂直薄热源在开放腔中自然对流的数值模拟

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This paper presents a numerical study of natural convection cooling of two heat sources vertically attached to horizontal walls of a cavity. The right opening boundary is subjected to the copper-water nanofluid at constant low temperature and pressure, while the other boundaries are assumed to be adiabatic. The governing equations have been solved using the finite volume approach, using SIMPLE algorithm on the collocated arrangement The study has been carried out for the Rayleigh number in the range 10~4 < Ra < 10~7, and for solid volume fraction 00.05. In order to investigate the effect of heat source location, three different placement configurations of heat sources are considered. The effects of both Rayleigh numbers and heat source locations on the streamlines, isotherms, Nusselt number are investigated. The results indicate that the flow field and temperature distributions inside the cavity are strongly dependent on the Rayleigh numbers and the position of the heat sources. The results also indicate that the Nusselt number is an increasing function of the Rayleigh number, the distance between two heat sources, and distance from the wall. In addition it is observed that the average Nusselt number increases linearly with the increase in the solid volume fraction of nanoparticles.
机译:本文提出了一个垂直于型腔水平壁的两个热源自然对流冷却的数值研究。右开口边界在恒定的低温和高压下经受铜-水纳米流体的作用,而其他边界被认为是绝热的。使用有限体积方法,并用SIMPLE算法对并置布置求解了控制方程。对瑞利数在10〜4

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