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Steady natural convection in a tilted long cylindrical envelope with lateral adiabatic surface, part 1: Theoretical modeling and numerical treatments

机译:在带有侧面绝热表面的倾斜长圆柱外壳中的稳定自然对流,第1部分:理论建模和数值处理

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The steady natural-convection heat transfer in a tilted cylindrical envelope with constant but different end temperatures (300 and 80 K) is investigated numerically with the lateral surface being adiabatic. The inner diameter of the envelope is 27.8 mm and its length/diameter ratio is 9. This is supposed to be a simplified model for the pulse tube in a pulse-tube cryocooler when the pulse tube is positioned at different orientations. The problem studied is a typical nonlinear one in that the thermophysical properties of the working fluid (helium) vary significant from the hot end to the cold end. Three-dimensional steady-state governing equations are solved with fully variable thermal properties. The high nonlinearity of the problem leads to many special characters of the convergence process, and a very peculiar convergence process is found. Initial-field dependence is also revealed. After quite a few preliminary computations, a series of convergence criteria are proposed. Grid-independence examination is conducted for inclination angle of 110degrees. It is found that the grid system of 20(r) x 20(phi) x 80(Z) with grids in the z direction being nonuniformly positioned can obtain a grid-independent solution. Preliminary computations are conducted for the horizontal position with 70degreesC of end temperature difference. The predicted velocity and temperature distributions are compared with available measured data. Good agreement between the predicted and measured results provides strong support for the physical model and numerical treatments developed in this article. [References: 34]
机译:在侧表面绝热的情况下,数值研究了倾斜的圆柱形外壳中具有恒定但不同的最终温度(300和80 K)的稳定自然对流传热。外壳的内径为27.8 mm,长度/直径比为9。当脉冲管位于不同的方向时,这被认为是脉冲管低温冷却器中脉冲管的简化模型。研究的问题是一种典型的非线性问题,因为工作流体(氦气)的热物理性质从热端到冷端变化很大。用完全可变的热特性求解三维稳态控制方程。问题的高度非线性导致收敛过程具有许多特殊特征,并且发现了一个非常特殊的收敛过程。初始场依赖性也被揭示。经过大量的初步计算,提出了一系列收敛准则。进行110度倾斜角的栅格独立检查。发现20(r)x20φ(x)x 80(Z)的网格系统在z方向上的网格位置不均匀,可以获得与网格无关的解。对端温差为70℃的水平位置进行了初步计算。将预测的速度和温度分布与可用的测量数据进行比较。预测结果与测量结果之间的良好一致性为本文开发的物理模型和数值处理提供了有力的支持。 [参考:34]

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