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Fluid-to-fluid scaling criteria development for modeling high pressure steam condensation in horizontal tubes

机译:用于模拟水平管中高压蒸汽冷凝的流体到流体比例缩放标准的开发

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Experimental investigations of high pressure steam condensation heat transfer are limited due to technical requirements and construction costs of experimental facilities. Applying fluid-to-fluid scaling methods is a possible way to overcome those difficulties. Performing experiments with simulant fluid, Freon for instance, allows testing at low pressure, low temperature and with low power requirements compared with the prototype. Fluid-to-fluid scaling criteria for modeling high pressure steam condensation have been developed based on two approaches, the Buckingham Pi theorem and the non-dimensionalization of the governing equations and the interface boundary conditions. Both criteria have been validated using eight benchmark problems and based on three different condensation models. The approach based on the non-dimensionalization of the governing equations and the interface boundary conditions showed a better method for modeling the high pressure steam condensation phenomena. It showed that, in order to guarantee the similarity between the prototype and the model, the liquid-to-vapor density ratio, the Froude number and the vapor Reynolds number should be preserved. In comparison with the prototype, by applying the scaling criteria to model steam condensation in secondary system passive decay heat removal system of a pressurized water nuclear reactor, the model's pressure can be reduced by six times. Therefore, reducing the cost of conducting experimental tests.
机译:由于技术要求和实验设备的建造成本,对高压蒸汽冷凝传热的实验研究受到限制。应用流体到流体的缩放方法是克服这些困难的一种可能方法。与模拟流体相比,例如使用氟利昂(Freon)模拟流体进行实验,可以在低压,低温和低功率要求下进行测试。基于两种方法,白金汉Pi定理和控制方程和界面边界条件的无量纲化,已经开发出了用于模拟高压蒸汽冷凝的流体到流体比例缩放标准。这两个标准已使用八个基准问题并基于三个不同的冷凝模型进行了验证。基于控制方程的无量纲化和界面边界条件的方法为建模高压蒸汽冷凝现象提供了一种更好的方法。结果表明,为了保证原型与模型之间的相似性,应保留液汽密度比,弗洛德数和蒸气雷诺数。与原型相比,通过应用缩放标准对压水核反应堆的二次系统被动衰变除热系统中的蒸汽冷凝进行建模,模型的压力可以降低六倍。因此,降低了进行实验测试的成本。

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