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The application of structural reliability techniques to plume impingement loading of the Space Station Freedom Photovoltaic Array

机译:结构可靠性技术在空间站自由光伏阵列羽流冲击载荷中的应用

摘要

A new aerospace application of structural reliability techniques is presented, where the applied forces depend on many probabilistic variables. This application is the plume impingement loading of the Space Station Freedom Photovoltaic Arrays. When the space shuttle berths with Space Station Freedom it must brake and maneuver towards the berthing point using its primary jets. The jet exhaust, or plume, may cause high loads on the photovoltaic arrays. The many parameters governing this problem are highly uncertain and random. An approach, using techniques from structural reliability, as opposed to the accepted deterministic methods, is presented which assesses the probability of failure of the array mast due to plume impingement loading. A Monte Carlo simulation of the berthing approach is used to determine the probability distribution of the loading. A probability distribution is also determined for the strength of the array. Structural reliability techniques are then used to assess the array mast design. These techniques are found to be superior to the standard deterministic dynamic transient analysis, for this class of problem. The results show that the probability of failure of the current array mast design, during its 15 year life, is minute.
机译:提出了一种结构可靠性技术在航空航天领域的新应用,其中所施加的力取决于许多概率变量。该应用是空间站自由光伏阵列的羽流冲击载荷。当航天飞机停靠在具有自由空间站的位置时,它必须使用其主要喷气机制动并朝着停泊点回旋。喷射废气或羽流可能会在光伏阵列上造成高负载。控制这个问题的许多参数是高度不确定和随机的。提出了一种使用结构可靠性技术的方法,该方法与公认的确定性方法相反,该方法评估了由于羽流冲击载荷而导致的天线杆失灵的可能性。停泊方法的蒙特卡洛模拟用于确定载荷的概率分布。还确定阵列强度的概率分布。然后,使用结构可靠性技术来评估阵列桅杆设计。对于这类问题,发现这些技术优于标准确定性动态瞬态分析。结果表明,当前阵列桅杆设计在其15年的使用寿命中发生故障的可能性很小。

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