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Cycle-Based Vapor Cycle System Control and Active Charge Management for Dynamic Airborne Applications

机译:基于循环的蒸汽循环系统控制和动态空气载体应用的主动充电管理

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Numerous previous studies have highlighted the potential efficiency improvements which can be provided to aircraft thermal management systems by the incorporation of vapor cycle systems (VCS), either in place of, or in conjunction with, standard air cycle systems, for providing the needed thermal management for aircraft equipment and crews. This paper summarizes the results of a cycle-based VCS control architecture as tested using the Vapor Cycle System Research Facility (VCSRF) in the Aerospace Systems Directorate of the Air Force Research Laboratory at Wright-Patterson Air Force Base. VCSRF is a flexible, dynamic, multi-evaporator VCS which incorporates electronic expansion valves and a variable speed compressor allowing the flexibility to test both components and control schemes. The goal of this facility is to reduce the risk of incorporating VCS into the thermal management systems (TMS) of future advanced aircraft. In this paper, the authors discuss the hardware configuration, as well as the differences between a baseline control architecture (consisting of evaporator superheat and system capacity control) and the suggested cycle-based control. It will highlight some of the implications of the practical constraints on the control schemes. In addition, an active charge management (ACM) system was implemented as part of the VCSRF; initial data showing the efficiency improvements enabled by this system are also presented.
机译:众多先前的研究突出了通过掺入蒸汽循环系统(VCS)的潜在效率改进,该系统可以通过替代蒸汽循环系统(VCS),即代替标准空气循环系统,用于提供所需的热管理用于飞机设备和船员。本文总结了在威尔古斯 - 帕特森空军基地空军研究实验室航空航天系统研究实验室中的汽室系统研究设施(VCSRF)测试的基于周期的VCS控制架构的结果。 VCSRF是一种灵活的动态,多蒸发器VC,其包含电子膨胀阀和可变速度压缩机,允许灵活地测试组件和控制方案。该设施的目标是降低将VCS纳入未来先进飞机的热管理系统(TMS)的风险。在本文中,作者讨论了硬件配置,以及基线控制架构(包括蒸发器超热和系统容量控制)和基于建议的循环控制之间的差异。它将突出对控制方案对实际限制的一些影响。此外,作为VCSRF的一部分实施了主动充电管理(ACM)系统;还提出了该系统启用的效率改进的初始数据。

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