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Geometrical and Rayleigh number effects in the transient laminar free convection between two vertically eccentric spheres

机译:两个垂直偏心球之间的瞬态层流自由对流中的几何和瑞利数效应

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Purpose- The purpose of this paper is to study the transient natural convection of a Newtonian fluid which develops in a closed spherical annulus delimited by two vertically eccentric spheres by using a bispherical coordinates system. The inner sphere is heated by a heat flux of constant density and the outer one is maintained isothermal.rnDesign/methodology/approach - The transfer equations are written by using a bispherical coordinates system. The Navier-Stokes equations are solved and coupled with the energy equation by using the alternating direction implicit (ADI) and the successive over relaxation (SOR) methods. Findings - The study of the stream function and the Nusselt number shows that the convection motion is reinforced for the geometries characterized by positive values of the eccentricity with heat exchange increasing. The Nusselt number increases with the modified Rayleigh number. The heat exchange increases with the radius ratio. The results show that the steady state is reached faster when the modified Rayleigh number increases and the influence of the eccentricity is very low on the establishment of the steady state. The fluids flow depends strongly on the eccentricity and the modified Rayleigh number.rnResearch limitations/implications - Simulations are performed for modified Rayleigh numbers ranging from 10~3 to 10~6, for eccentricities varying between -0.6 and +0.6 and for radius ratio between 1.5 and 2.rnOriginality/value - The results of eccentricity and modified Rayleigh number effects in transient natural convection between vertically eccentric spheres have been displayed.
机译:目的-本文的目的是使用双球坐标系研究牛顿流体的瞬态自然对流,该流体在由两个垂直偏心球界定的封闭球形环中发展。内部球体被恒定密度的热流加热,外部球体保持等温。设计/方法/方法-传递方程式是使用双球坐标系编写的。通过使用交替方向隐式(ADI)和连续过度松弛(SOR)方法,求解Navier-Stokes方程并将其与能量方程耦合。研究结果-对流函数和Nusselt数的研究表明,对流运动在几何形状上得到了增强,其特征是随着热交换的增加,偏心率的正值增加。 Nusselt数随瑞利数的修改而增加。换热随着半径比的增加而增加。结果表明,当修正的瑞利数增加时,达到稳态更快,偏心率对建立稳态的影响很小。流体流动在很大程度上取决于偏心率和修改后的瑞利数。研究限制/含义-对修改后的瑞利数在10〜3至10〜6之间,偏心度在-0.6和+0.6之间变化以及半径比在1.5和2.rnOriginality / value-在垂直偏心球体之间的瞬时自然对流中,显示了偏心率和修正的瑞利数效应的结果。

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    Department of Physics, Faculty of Science and Technology, University Cheikh Anta Diop of Dakar, Fann, Senegal;

    Department of Physics, Faculty of Science and Technology, University Cheikh Anta Diop of Dakar, Fann, Senegal;

    Department of Physics, Faculty of Science and Technology, University Cheikh Anta Diop of Dakar, Fann, Senegal;

    Department of Physics, Faculty of Science and Technology, University Cheikh Anta Diop of Dakar, Fann, Senegal;

    Department of Physics, Faculty of Exact and Experimental Sciences, University of Perpignan, Perpignan, France;

    Centre for Study and Research in Renewable Energy (CERER), University Cheikh Anta Diop of Dakar, Hann Equipe, Senegal;

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  • 正文语种 eng
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  • 关键词

    convection; heat; flux; flow; laminar flow;

    机译:对流;热;通量流;层流;

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