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Active thermal control of parallel heat loads on space station U.S. Laboratory Module

机译:太空站U.S.实验室模块上的平行热负荷的主动热控制

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The Active Thermal Control System (ATCS) of the Space Station U.S. Laboratory (USL) module circulates coolant fluid to remove heat from subsystem and experiment equipment located in racks and endcones. The system is designed to provide active flow control and parallel service to each of the various racks. This arrangement provides several advantages but also raises concerns over the ability to control and balance the flow to each heat load as required. Since the USL will have fluctuating heat loads due to operation and cycling of user experiments, the ATCS must respond to the cooling needs of the individual racks while maintaining adequate service to other experiments and to the Station subsystems. This paper addresses the capability of the ATCS to meet all cooling needs of the Space Station USL by implementing the parallel heat load with active flow control design. Consideration is given to the rationale that led to the selection of the current design, description of the system architecture and major ATCS components that contribute to successful operation of the system, results of development tests that simulate a variety of operational scenarios, and a brief discussion of control algorithm development and analysis.
机译:空间站U.S.upsatory(USL)模块的有源热控制系统(ATCS)循环冷却液流体,从位于架子和凹凸中的子系统和实验设备中除去热量。该系统旨在向各种机架中的每一个提供主动流量控制和并行服务。这种布置提供了几个优点,但也提高了根据需要控制和平衡流量的能力的担忧。由于USL由于用户实验的操作和循环导致的热负荷波动,因此ATC必须响应各个机架的冷却需求,同时保持足够的服务到其他实验和站子系统。本文通过利用主动流量控制设计实现平行热负荷来满足ATC的能力,以满足空间站USL的所有冷却需求。考虑到导致选择当前设计的理由,系统架构的描述和主要的ATC组件有助于成功运行系统,开发测试结果模拟各种操作场景以及简要讨论控制算法开发与分析。

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