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G-300: The first French Getaway Special microgravity measurements of fluid thermal conductivity

机译:G-300:流体导热系数的第一个法国Getaway特殊微重力测量

摘要

Thermal conductivity measurements on liquids are difficult to perform on Earth because of thermal motions due to convection. In microgravity, the convection due to buoyancy is evanescent, and a strong reduction of Rayleigh and Nusselt numbers can be expected. Three low viscosity liquids are selected to carry out the measurements; distilled water (standard) and two silicone oils. A modified hot plate method with a simplified guard ring is used; the reduction of convective motions permitted the use in the experimental cells of larger interplate distances and/or temperature differences than in Earth measurements, improving the accuracy. Comparisons between Earth and orbit results may help to understand the convection occurrence in the cells. Thermal, vibrational, and EMI tests have proved that the design satisfies the NASA requirements.
机译:由于对流引起的热运动,很难在地球上进行液体的热导率测量。在微重力中,由于浮力引起的对流逐渐消失,可以预期瑞利和纳塞尔特数将大大减少。选择三种低粘度液体进行测量。蒸馏水(标准)和两种硅油。使用带有简化保护环的改进的热板方法;对流运动的减少允许在实验池中使用比地球测量更大的板间距离和/或温度差,从而提高了准确性。地球和轨道结果之间的比较可能有助于了解细胞中对流的发生。热,振动和EMI测试已经证明该设计满足NASA的要求。

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