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ENHANCED CAPILLARY RISE OF WETTING LIQUIDS IN REDUCED GRAVITATIONAL SHIELDING UNDER MICROGRAVITY CONDITIONS

机译:微重力条件下重力沉降减少时润湿液的毛细作用增强

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We study the capillary rise of wetting in liquids by slightly modifying Ponomarenko's result, a recently derived and observed t~(1/3) law, without omitting the corresponding gravity term and therefore we find hnew (t)≡0.9085h_(Pon) (t) instead, which corresponds to a 9% difference. Furthermore, in order to examine the effect of corrected gravity, we extend the result on the surface of a planetary body by correcting the gravitational acceleration for its oblateness coefficient and rotation. We find that experiments that take place on the equator result in highest capillary heights, than those at mid latitudes and the poles. Similarly, analyzing the effect of reduced gravitational shielding on the capillary rise under conditions of microgravity in experiments aboard orbiting spacecraft, we find that equatorial circular orbits exhibit the highest capillary heights, where equatorial elliptical orbits of large eccentricities exhibit the smallest capillary heights. Finally, we calculate the rate of change of the meniscus height in the time domain, for the different laboratory conditions on the surface of the Earth and in space and as example. As an example we say that laboratory sites at the equator will exhibit larges time rates of change for the meniscus height. Similarly, for experiments above a spacecraft we find that circular equatorial orbits exhibit the highest time rates of change, where elliptical orbits exhibit smaller time rates that reduce as the eccentricity increases.
机译:我们通过略微修改Ponomarenko的结果(最近推导并观察到的t〜(1/3)定律),而不忽略相应的重力项来研究液体中的湿润毛细现象,因此我们发现hnew(t)≡0.9085h_(Pon)( t),相差9%。此外,为了检查校正后的重力的影响,我们通过校正重力加速度的扁率系数和自转来将结果扩展到行星体的表面上。我们发现,与中纬度和两极相比,在赤道上进行的实验产生的毛细管高度最高。类似地,在轨道飞行器上进行的实验中,在微重力条件下分析了重力屏蔽力降低对毛细管上升的影响,我们发现赤道圆形轨道表现出最高的毛细管高度,大偏心率的赤道椭圆轨道表现出最小的毛细管高度。最后,以地球表面和太空中不同实验室条件为例,计算时域中弯月面高度的变化率。例如,我们说赤道上的实验室地点的弯月面高度变化时间较大。同样,对于航天器上方的实验,我们发现圆形的赤道轨道表现出最高的时间变化率,其中椭圆形轨道表现出较小的时间变化率,并随着偏心率的增加而减小。

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