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CFD implementation and experimental validation of the Chen model for heat transfer in nucleate boiling

机译:核沸腾传热的Chen模型的CFD实施和实验验证

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The present paper describes a nucleate boiling model based on Chen's correlation, and posterior validation with experimental data. When using a heat exchanger with a liquid coolant, if the wall exceeds the saturation temperature of the liquid at system's pressure, it may boil, increasing the heat transfer law. The aim of this study is to validate the model developed with some experiments carried out in a heated flat probe. The proposed algorithm consists of a heat flux partition in two terms, one regarding the forced convection heat transfer existing in the free-boil area, and the other term considers the heat transfer increment due to the nucleate boiling. Consequently, general results show lower temperatures in the wall because of the increased heat flux, proved in several industrial components within these conditions. To achieve the model validation, some simulations were developed with the CFD software Ansys Fluent, configured with the same geometry and conditions as our experimental installation. Using a copper conduction, a heat flux up to 2MW is used to increase the temperature of a wall in contact with water, which flows through a 20mm wide and 25mm high duct. Heat transfer data are recorded while the temperature increases, allowing us to compare the boiling curves with the CFD boiling model results. Data comparisons show a good agreement with five cases studied at different conditions of system pressure and velocity and temperature inlet. An implementation of a widely used boiling model has been developed and its results have been validated with our experimental data, providing a good agreement under the specified conditions. The obtained results have shown an important improvement with respect to other multiphasic and standard models, offering better results simulating industrial components.
机译:本文介绍了基于Chen相关性的核沸腾模型,并通过实验数据进行了后验。当使用带有液体冷却剂的热交换器时,如果壁在系统压力下超过液体的饱和温度,则壁可能会沸腾,从而增加了传热规律。这项研究的目的是验证通过在加热的扁平探针中进行的一些实验开发的模型。所提出的算法由两部分组成的热通量分配,一是关于在自由沸腾区域中存在的强制对流传热,另一是考虑由于核沸腾而引起的传热增量。因此,一般结果表明,由于热通量的增加,墙体中的温度降低了,在这些条件下的几个工业组件中都得到了证明。为了实现模型验证,使用CFD软件Ansys Fluent开发了一些仿真,并配置了与我们的实验安装相同的几何形状和条件。使用铜导体,可使用高达2MW的热通量来增加与水接触的壁的温度,该壁流经20mm宽和25mm高的管道。在温度升高时记录传热数据,使我们能够将沸腾曲线与CFD沸腾模型结果进行比较。数据比较表明,与在系统压力,速度和温度入口的不同条件下研究的五个案例有很好的一致性。已经开发了一种广泛使用的沸腾模型的实现方式,其结果已经通过我们的实验数据进行了验证,在指定条件下提供了良好的一致性。获得的结果显示出相对于其他多相和标准模型的重要改进,提供了更好的模拟工业组件的结果。

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