首页> 外文会议>10th International Conference on Nuclear Engineering, Vol.3, Apr 14-18, 2002, Arlington, Virginia >PREDICTION OF PARAMETERS DISTRIBUTION OF UPWARD BOILING TWO-PHASE FLOW WITH TWO-FLUID MODELS
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PREDICTION OF PARAMETERS DISTRIBUTION OF UPWARD BOILING TWO-PHASE FLOW WITH TWO-FLUID MODELS

机译:两种流体模型的沸腾两相流参数分布预测

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In this paper, a multidimensional two-fluid model with additional turbulence k - ε equations is used to predict the two-phase parameters distribution in freon R12 boiling flow. The 3D module of the CATHARE code is used for numerical calculation. The DEBORA experiment has been chosen to evaluate our models. The radial profiles of the outlet parameters were measured by means of an optical probe. The comparison of the radial profiles of void fraction, liquid temperature, gas velocity and volumetric interfacial area at the end of the heated section shows that the multidimensional two-fluid model with proper constitutive relations can yield reasonably predicted results in boiling conditions. Sensitivity tests show that the turbulent dispersion force, which involves the void fraction gradient, plays an important role in determining the void fraction distribution; and the turbulence eddy viscosity is a significant factor to influence the liquid temperature distribution.
机译:本文使用具有附加湍流k-ε方程的多维两流体模型来预测氟利昂R12沸腾流中的两相参数分布。 CATHARE代码的3D模块用于数值计算。已选择DEBORA实验来评估我们的模型。出口参数的径向轮廓通过光学探针测量。对加热段末端的空隙率,液体温度,气体速度和体积界面面积的径向分布图的比较表明,具有适当本构关系的多维两流体模型可以在沸腾条件下产生合理的预测结果。灵敏度测试表明,涉及空隙率梯度的湍流弥散力在确定空隙率分布中起着重要作用。湍流涡粘度是影响液体温度分布的重要因素。

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