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Conjugate conduction-free convection heat transfer between two concentric cylinders

机译:两个同心圆柱之间的共轭无传导对流换热

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Conjugate heat transfer is a coupled, fluid-structure, heat transfer problem where heat conduction in a solid wall interacts with heat convection in adjacent fluid flow. This paper examines numerically the conjugate conduction-free convection heat transfer in an annulus between two concentric cylinders. The annulus contains Newtonian fluid and is heated isothermally from its inner wall. The full governing equations of momentum and energy have been solved by using Fourier spectral method to give the details of flow and thermal fields. The effect of Rayleigh number, thermal conductivity ratio between solid inner wall and adjacent fluid and thickness of inner wall on heat transfer rate (in terms of Nusselt number) within the annulus has been examined through numerical experimentation. The heat transfer through concentric annulus increases as the thermal conductivity ratio increases. The study has also shown that the effect of inner wall thickness on heat transfer through concentric annulus depends upon the thermal conductivity ratio and Rayleigh number. For thermal conductivity ratio less than one the increase of inner wall thickness decreases the rate of heat transfer. While for thermal conductivity ratio bigger than one the increase in inner wall thickness will increase or decrease the heat transfer through concentric annulus depending upon Rayleigh number and radius ratio of the annulus.
机译:共轭热传递是一个耦合的,流体结构的热传递问题,其中固体壁中的热传导与相邻流体流中的热对流相互作用。本文对两个同心圆柱体之间的环空中的共轭无传导对流换热进行了数值研究。环面包含牛顿流体,并从其内壁等温加热。通过使用傅立叶谱方法给出了流场和热场的详细信息,已经解决了动量和能量的完整控制方程。通过数值实验研究了瑞利数,固体内壁与相邻流体之间的导热系数,内壁厚度对环内传热速率(以努塞尔数表示)的影响。随着导热率的增加,通过同心环的热传递也增加。研究还表明,内壁厚度对通过同心环空传热的影响取决于导热系数和瑞利数。如果导热系数小于1,则内壁厚度的增加会降低传热速率。对于大于1的导热系数,内壁厚度的增加将增加或减少通过同心环的传热,具体取决于环的瑞利数和半径比。

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