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Sloshing dynamics modulated fluid angular momentum and moment fluctuations driven by orbital gravity gradient and jitter accelerations in microgravity

机译:晃动动力学调制了由轨道重力梯度和微重力引起的抖动加速度驱动的流体角动量和力矩波动

摘要

The dynamical behavior of spacecraft propellant affected by the asymmetric combined gravity gradient and jitter accelerations, in particular the effect of surface tension on partially-filled rotating fluids applicable to a full-scale Gravity Probe-B Spacecraft dewar tank has been investigated. Three different cases of orbital accelerations: (1) gravity gradient-dominated, (2) equally weighted between gravity gradient and jitter, and (3) gravity jitter-dominated accelerations are studied. The results of slosh wave excitation along the liquid-vapor interface induced by gravity gradient-dominated accelerations provide a torsional moment with tidal motion of bubble oscillations in the rotating dewar. The results are clearly seen from the twisting shape of the bubble oscillations driven by gravity gradient-dominated acceleration. The results of slosh wave excitation along the liquid-vapor interface induced by gravity jitter-dominated acceleration indicate the results of bubble motion in a manner of down-and-up and leftward-and-rightward movement of oscillation when the bubble is rotating with respect to rotating dewar axis. Fluctuations of angular momentum, fluid moment and bubble mass center caused by slosh wave excitations driven by gravity gradient acceleration or gravity jitter acceleration are also investigated.
机译:研究了受非对称重力梯度和抖动加速度综合影响的航天器推进剂的动力学行为,特别是表面张力对适用于全尺寸重力探测器-B航天器杜瓦罐的部分充满的旋转流体的影响。研究了三种不同的轨道加速度情况:(1)以重力梯度为主,(2)在重力梯度和抖动之间均等加权,以及(3)以重力抖动为主的加速度。由重力梯度主导的加速度引起的沿液-气界面的晃荡波激发的结果提供了带有旋转杜瓦瓶中气泡振荡的潮汐运动的扭转力矩。从重力梯度主导的加速度驱动的气泡振荡的扭曲形状可以清楚地看到结果。由重力抖动为主的加速度沿液-气界面激发的晃荡波激励结果表明,气泡运动以气泡相对于转子旋转时的上下和左右振动方式运动旋转杜瓦瓶轴。还研究了由重力梯度加速度或重力抖动加速度驱动的晃荡波激发引起的角动量,流体矩和气泡质心的波动。

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  • 作者

    Pan H. L.; Hung R. J.;

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  • 年度 1995
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