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首页> 外文期刊>International Journal of Multiphase Flow >Scaling two-phase flows to Mars and Moon gravity conditions
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Scaling two-phase flows to Mars and Moon gravity conditions

机译:将两相流按比例缩放到火星和月球重力条件

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摘要

Hydrodynamic measurements are presented for two-phase flows in Mars and Moon gravity conditions. High accuracy pressure drop and flow rate data were obtained using dichlorodifluoromethane (i.e., R-12) as the working fluid flowing in a nominally 11.1 mm inner diameter tube. Measurements were made at Mars gravity, approximately 0.38-g, and Moon gravity, approximately 0.17-g, using NASA's KC-135 aircraft. A simplified scaling approach was developed using dimensional analysis and can be used to design an Earth-based test bed to simulate a Mars or Moon gravity prototype. For a specific geometry, a selected working fluid at a fixed temperature and pressure, and a particular flow regime condition, the pressure drop functional scaling equation is a simple, power-law relationship for the Euler number as a function of only the Froude number. The research completed supports the use of Earth-g tests to predict the behavior of two-phase systems for Moon-g and Mars-g applications.
机译:提出了在火星和月球重力条件下两相流的水动力测量。使用二氯二氟甲烷(即R-12)作为在标称内径为11.1 mm的内径管中流动的工作流体,可以获得高精度的压降和流量数据。使用NASA的KC-135飞机在火星重力(约0.38 g)和月球重力(约0.17 g)下进行了测量。使用尺寸分析开发了一种简化的缩放方法,可用于设计基于地球的测试台以模拟火星或月球重力原型。对于特定的几何形状,在固定的温度和压力下选择的工作流体以及特定的流动状态条件,压降功能缩放方程式是欧拉数仅是弗洛德数的函数的简单幂律关系。已完成的研究支持使用Earth-g测试来预测Moon-g和Mars-g应用的两相系统的行为。

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