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Non-iterative model for condensation heat transfer in presence of non-condensable gases inside passive containment cooling vertical tubes

机译:被动安全壳冷却垂直管内存在不可凝气体时凝结传热的非迭代模型

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Some contributions have been stated in order to improve the modeling of concurrent downflow condensation in presence of non-condensables inside vertical tubes. In particular, the influence of non-condensables over the liquid side heat transfer has been considered. The new proposed mechanistic models solve explicitly the real interface temperature by means of a cubic or a fourth order equation. As these models have a non-iterative nature, they can avoid the weakest point of the traditional mechanistic models, which is the slowdown computation if the model had to be implemented in a code. Moreover, as the main non-condensables effects can be accounted for in the heat and mass transfer processes, the new models will be more realistic. The models have been validated with the Vierow experimental data, obtaining a total average relative error, for the fourth order equation method model, of 21% for 268 points.
机译:为了改善在垂直管内存在非冷凝物的同时发生的下游冷凝的建模,已经做出了一些贡献。特别地,已经考虑了非冷凝物对液体侧传热的影响。新提出的力学模型通过三次方程或四阶方程显式求解了实际界面温度。由于这些模型具有非迭代性质,因此它们可以避免传统机械模型的最薄弱之处,如果必须在代码中实施该模型,则这是速度较慢的计算。此外,由于可以在传热和传质过程中解释主要的非冷凝物效应,因此新模型将更加现实。该模型已经用Vierow实验数据进行了验证,对于四阶方程法模型,对于268点,获得了21%的总平均相对误差。

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