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The Effect of Reaction Control System Thruster. Plume Impingement on Orion Service Module Solar Array Power Production

机译:反应控制系统推进器的影响。羽毛服务模块太阳能阵电力生产羽毛冲击

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NASA's new Orion Crew Exploration Vehicle has geometry that orients the reaction control system (RCS) thrusters such that they can impinge upon the surface of Orion's solar array wings (SAWs). Plume impingement can cause Paschen discharge, chemical contamination, thermal loading, erosion, and force loading on the SAW surface, especially when the SAWs are in a worst-case orientation (pointed 45° towards the aft end of the vehicle). Preliminary plume impingement assessment methods were needed to determine whether in-depth, time-consuming calculations were required to assess power loss. Simple methods for assessing power loss as a result of these anomalies were developed to determine whether plume impingement induced power losses were below the assumed contamination loss budget of 2%. This paper details the methods that were developed and applies them to Orion's worst-case orientation.
机译:美国宇航局的新猎户座船员勘探车有几何形状,使反应控制系统(RCS)推进器,使得它们可以撞击猎户座的太阳能阵列(锯)的表面。羽流撞击会引起帕斯切排放,化学污染,热负荷,腐蚀,以及在锯表面上的力负载,特别是当锯处于最坏情况方向时(向车辆的后端指向45°)。需要初步羽流撞击评估方法以确定是否需要深入,耗时的计算来评估功率损失。开发了由于这些异常而评估功率损失的简单方法,以确定羽流撞击诱导的功率损耗低于假定污染损失预算2%。本文详细说明了开发的方法,并将其应用于猎户座最糟糕的方向。

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