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Orion Multi-Purpose Crew Vehicle Solving and Mitigating the Two Main Cluster Pendulum Problem

机译:Orion多功能乘员车解决并缓解了两个主群摆问题

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The Orion Multi-purpose Crew Vehicle (MPCV) Orion spacecraft will return humans from beyond earth's orbit, including Mars and will be required to land 20,000 pounds of mass safely in the ocean. The parachute systemnominally lands under 3 main parachutes, but the systemis designed to be fault tolerant and land under 2 main parachutes. During several of the parachute development tests, it was observed that a pendulum, or swinging, motion could develop while the Crew Module (CM) was descending under two parachutes. This pendulum effect had not been previously predicted by modeling. Landing impact analysis showed that the landing loads would double in some places across the spacecraft. The CM structural design limits would be exceeded upon landing if this pendulum motion were to occur. The Orion descent and landing team was faced with potentially millions of dollars in structural modifications and a severe mass increase A multidis ciplinary team was formed to determine root cause, model the pendulum motion, study alternate canopy planforms and assess alternate operational vehicle controls & operations providing mitigation options resulting in a reliability level deemed safe for human spaceflight. The problem and solutionis a balance of risk toa known solution versus a chance to improve the landing performance for the next human-rated spacecraft.
机译:“猎户座”多功能乘员飞行器(MPCV)“猎户座”航天器将使人类从包括火星在内的地球轨道返回,并将被要求在海洋中安全降落20,000磅的质量。降落伞系统名义上降落在3个主要降落伞下,但该系统设计成具有容错能力,降落在2个主要降落伞下。在几个降落伞开发测试中,观察到当乘员组(CM)在两个降落伞下下降时,可能会产生摆锤或摇摆运动。以前没有通过模型预测这种摆的效果。着陆影响分析表明,在整个航天器的某些地方,着陆负荷将增加一倍。如果发生这种摆运动,将在着陆时超出CM结构设计限制。 Orion下降和着陆团队面临着数百万美元的结构修改和严重的质量增加的需求。一个多学科团队成立,以确定根本原因,对摆运动进行建模,研究替代的顶篷平面图,并评估替代的操作车辆控制和操作,缓解措施带来的可靠性水平被认为对人类航天而言是安全的。问题和解决方案是在已知解决方案的风险与提高下一个人类额定航天器的着陆性能的机会之间取得平衡。

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