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Design and Selection Criteria of Main Parachute for Re-entry Space Payload

机译:重新入口空间有效载荷的主要降落伞的设计与选择标准

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摘要

Parachutes are used as a decelerator in the re-entry, descent, and landing of space recovery payloads, providing stability and desired descent rate for a safe landing. The selection of the main parachute is the most critical and important part of the space module recovery system. Parachute size is restricted by the required landing speed, materials, and weight of the payload. Parachute materials are selected based on the various forces experienced by the parachute. An investigation has been carried out to design a parachute system which gives less impact velocity, less angle of oscillation and less impact load for the landing of a crew module. Therefore, in this paper, selection criteria for the main parachute have been discussed considering recovery of re-entry space payload of 500 kg (unmanned) and 3500 kg (manned) class. Based on analysis carried out on the parachute size, canopy filling time, velocity reduction, peak deceleration, and opening shock, authors have proposed a unique type of solid canopy with slots (slots of the minimum area equivalent to geometry porosity) for the main parachute rather than a complex ringsail or disk-band type canopy. With this new concept, the parachute has been designed, developed and qualified through testing, trials and maiden flight of space capsule in LEO and is propose to use in the next manned space mission program.
机译:降落作为在空间恢复有效载荷的重新入口,下降和降落中的降斜器,为安全着陆提供稳定性和期望的血液速度。主要降落伞的选择是空间模块恢复系统的最关键和重要的部分。降落伞尺寸受到有效载荷所需的着陆速度,材料和重量的限制。基于降落伞经历的各种力选择降加降伞材料。已经进行了调查来设计降落伞系统,该降落伞系统产生较小的冲击速度,振荡角度较小,较少的船员模块着陆的冲击负荷。因此,在本文中,考虑恢复重新进入空间有效载荷为500公斤(无人驾齐)和3500公斤(载有3500公斤(载有3500公斤(载有3500公斤)的选择标准,已经讨论了主要降落伞的选择标准。基于分析对降落伞大小进行分析,树冠灌装时间,速度降低,峰值减速和打开冲击,提出了一种独特的固体冠层,具有用于主要降落伞的槽(相当于几何孔隙度的最小面积的槽)而不是复杂的ringsail或磁带频带类型的树冠。通过这种新概念,通过在Leo的空间胶囊的测试,试验和少女飞行,逐步制定,开发和合格,并建议在下一个载人的特派团计划中使用。

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