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Numerical study of transient laminar natural convection over an isothermal sphere

机译:等温球面上瞬态层流自然对流的数值研究

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The full Navier-Stokes equations and the energy equation for laminar natural convection heat transfer over an isothermal sphere have been discretized using the finite control volume formulation and solved by employing the SIMPLEC method. Transient and "steady-state" results have been obtained for a wide range of high Grashof numbers (10~5 ≤ Gr ≤ 10~9) and a wide range of Prandtl numbers (Pr = 0.02, 0.7, 7 and 100). Main results are listed below. A plume with a mushroom-shaped cap forms above the sphere and drifts upward continuously with time. The upward movement of the plume cap is slowed as the Prandtl number increases. The size and the level of temperature of the transient cap and plume stem decrease with increasing Gr and Pr. The time at which the "steady-state" is reached, increases with the Prandtl number. The presence of a vortex in the wake of the sphere has been predicted and has been clearly delineated as a function of both Grashof and Prandtl numbers. The overall Nusselt numbers and total drag coefficients for the range of Grashof and Prandtl numbers investigated are presented and they are in very good agreement with studies available in the literature.
机译:使用有限控制体积公式离散了等温球面上层流自然对流传热的完整Navier-Stokes方程和能量方程,并通过SIMPLEC方法求解。对于大范围的高格拉斯霍夫数(10〜5≤Gr≤10〜9)和大范围的普朗特数(Pr = 0.02、0.7、7和100),已经获得了瞬态和“稳态”结果。主要结果如下。球形上方形成带有蘑菇形帽的羽状物,并随时间连续向上漂移。随着Prandtl数的增加,羽状帽的向上运动变慢。瞬时盖和羽状茎的大小和温度水平随Gr和Pr的增加而减小。达到“稳态”的时间随Prandtl数的增加而增加。球体尾流中存在涡流已被预测,并已明确表示为Grashof和Prandtl数的函数。介绍了所研究的Grashof和Prandtl数范围内的总Nusselt数和总阻力系数,它们与文献中的研究非常吻合。

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