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Review of Condensation Heat Transfer in Microgravity Environments

机译:微重力环境下的冷凝传热研究

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摘要

A review of recent investigations of condensation in microgravity environments is presented in order to better understand the influence of microgravity, shear stress, surface tension, and/or capillary and centrifugal forces on condensation phenomenon. Based on a thorough review of the available literature on condensation in the absence of gravitational body forces, the potential of using the vapor shear stress to remove the condensate in systems designed for spacecraft applications was assessed. Other removal methods, such as the use of wall suction are presented, discussed and evaluated. It is apparent from the literature that the gravitational body force in condensation processes could effectively be replaced by the centrifugal forces generated by a rotating system. The possibility of utilizing surface tension and/or capillary forces to enhance the condensation phenomenon for use in spacecraft applications is also evaluated and discussed.
机译:为了更好地了解微重力,剪切应力,表面张力和/或毛细作用力和离心力对凝结现象的影响,对微重力环境下的凝结研究进行了综述。基于对不存在重力的情况下凝结的现有文献的全面回顾,评估了在设计用于航天器应用的系统中使用蒸气剪切应力去除凝结物的潜力。提出,讨论和评估了其他去除方法,例如壁吸的使用。从文献中可以明显看出,冷凝过程中的重力可以有效地被旋转系统产生的离心力所代替。还评估和讨论了利用表面张力和/或毛细作用力来增强航天器应用中的冷凝现象的可能性。

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