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Predictions of Heat Transfer and Flow Circulations in Differentially Heated Liquid Columns With Applications to Low-Pressure Evaporators

机译:差热式液柱中传热和流动循环的预测及其在低压蒸发器中的应用

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摘要

Numerical computations are presented for the temperature and velocity distributions of two differentially heated liquid columns with liquor depths of 0.1 m and 2.215 m, respectively. The temperatures in the liquid columns vary considerably with respect to position for pure conduction, free convection, and nucleate boiling cases using one-dimensional (1D) thermal resistance networks. In the thermal resistance networks the solutions are not sensitive to the type of condensing and boiling heat transfer coefficients used. However, these networks are limited and give no indication of velocity distributions occurring within the liquor. To alleviate this issue, two-dimensional (2D) axisymmetric and three-dimensional (3D) computational fluid dynamics (CFD) simulations of the test rigs have been performed. The axisymmetric conditions of the 2D simulations produce unphysical solutions; however, the full 3D simulations do not exhibit these behaviors. There is reasonable agreement for the predicted temperatures, heat fluxes, and heat transfer coefficients when comparing the boiling case of the 1D thermal resistance networks and the CFD simulations.
机译:给出了分别计算两个液体深度分别为0.1 m和2.215 m的差热液体塔的温度和速度分布的数值计算。对于使用一维(1D)热阻网络的纯传导,自由对流和成核沸腾情况,液柱中的温度会发生很大变化。在热阻网络中,解决方案对所使用的冷凝和沸腾传热系数类型不敏感。然而,这些网络是有限的,并且没有给出在液体内发生的速度分布的迹象。为了缓解此问题,已经对测试台进行了二维(2D)轴对称和三维(3D)计算流体动力学(CFD)仿真。二维模拟的轴对称条件会产生非物理解。但是,完整的3D模拟不会表现出这些行为。在比较一维热阻网络的沸腾情况和CFD模拟时,对于预测的温度,热通量和传热系数存在合理的共识。

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