首页> 外文会议>Space Technology and Applications International Forum (STAIF 2002), Feb 3-6, 2002, Albuquerque, New Mexico >A Probability Analysis of Space Radiator Segmenting for Increased Reliability and Reduced Mass
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A Probability Analysis of Space Radiator Segmenting for Increased Reliability and Reduced Mass

机译:空间散热器分段提高可靠性和减少质量的概率分析

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摘要

Spacecraft designed for long duration deep space missions will need to be designed to survive micro-meteoroid bombardment of its surfaces some of which may actually be punctured. To avoid loss of the entire mission the damage due to such punctures must be limited to small, localized areas. This is especially true for power system radiators, which necessarily feature large surface areas to reject heat at relatively low temperature to the space environment by thermal radiation. It may be intuitively obvious, that if a space radiator is composed of a large number of independently operating segments, such as heat pipes, a random micrometeoroid puncture will result only in the loss of the punctured segment, and not the entire radiator. Due to the redundancy achieved by independently operating segments, the wall thickness and consequently the weight of such segments can be drastically reduced. Probability theory is used to estimate the magnitude of such weight reductions as the number of segments is increased. An analysis of relevant parameter values required for minimum mass segmented radiators is also included.
机译:设计用于长时间深空任务的航天器将需要设计成能够承受其表面的微流星体轰击,其中一些实际上可能会被刺破。为了避免损失整个任务,必须将此类刺孔造成的损坏限制在较小的局部区域。对于电力系统散热器而言尤其如此,其必须具有较大的表面积以通过热辐射将相对较低温度的热量散发到空间环境。直观上很明显,如果空间散热器由大量独立运行的部分(例如热管)组成,则随机的微流线穿刺只会导致被刺穿的部分丢失,而不会导致整个散热器的损失。由于通过独立地操作区段实现了冗余,因此可以显着减小这种区段的壁厚和重量。概率理论用于估计随着段数增加而减少的重量的大小。还包括对最小质量分段散热器所需的相关参数值的分析。

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