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Thermal vacuum chamber repressurization with instrument purging

机译:通过仪器吹扫对真空室进行加压

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At the conclusion of cryogenic vacuum testing of the James Webb Space Telescope Optical Telescope Element Integrated Science Instrument Module (JWST-OTIS) in NASA Johnson Space Center's (JSCs) thermal vacuum (TV) Chamber A, contamination control (CC) engineers are postulating that chamber particulate material stirred up by the repressurization process may be kept from falling into the Integrated Science Instrument Module (ISIM) interior to some degree by activating instrument purge flows over some initial period before opening the chamber valves. This manuscript describes development of a series of models designed to describe this process. The models are strung together in tandem with a fictitious set of conditions to estimate overpressure evolution from which net outflow velocity behavior may be obtained. Creeping flow assumptions are then used to determine the maximum particle size that may be kept suspended above the ISIM aperture, keeping smaller particles from settling within the instrument module.
机译:在NASA Johnson Space Center(JSCS)热真空(TV)室A的詹姆斯韦伯空间望远镜光学望远镜元件集成科学仪器模块(JWST-OTIS)的结论中,污染控制(CC)工程师的污染控制(CC)的工程师通过在打开腔室阀之前的一些初始时段之前,可以将腔室搅拌的腔室颗粒材料搅拌的液体化材料通过激活仪器吹扫流动落入一定程度上。此稿件描述了一系列旨在描述此过程的模型的开发。该模型在串联中串联串联,具有虚拟条件,以估计可以获得净流出速度行为的过压演变。然后使用爬行流动假设来确定可以保持悬浮在ISIM孔上方的最大粒径,使较小的颗粒保持在仪器模块内的沉降。

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