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Charge Management for Large Transient Loads in a Multi-Evaporator Vapor Compression System with Recuperator

机译:具有恢复器的多蒸发器蒸汽压缩系统中大型瞬态负载的充电管理

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Two-phase cooling of electronics using vapor compression systems (VCS) is a promising approach for high heat flux removal, A challenge for multi-evaporator VCS is charge management during highly transient or peak/off-peak loads. We present a VCS architecture for direct cooling of multiple, high transient heat loads. This system utilizes a secondary-evaporator (recuperator) with an electronic bypass valve and a suction-line accumulator to enable evaporator overfeed and active charge management. An existing lumped-parameter, low-order nonlinear model is augmented to include the recuperator and bypass control valve. The cycle performance and efficiency is improved with the inclusion of the recuperator, but is susceptible to instability. A proportional-integral (PI) bypass valve control is tuned for evaporator pressure tracking, stabilizing the cycle. The improved circulating charge-management capability of the VCS with recuperator is demonstrated with multi-evaporator experiments, and the improvement in coefficient of performance (COP) over the accumulator-heated cycle is calculated.
机译:使用蒸汽压缩系统(VCS)的电子器件的两相冷却是用于高热通量去除的有希望的方法,对于高瞬态或峰值/截止峰值负载,多蒸发器VCS的挑战是充电管理。我们提出了一种用于直接冷却多个高瞬态热负荷的VCS架构。该系统利用具有电子旁通阀的二次蒸发器(恢复器)和吸入管线蓄能器,以使蒸发器过度喂食和有源充电管理。现有的总体参数,低阶非线性模型增强以包括恢复器和旁路控制阀。循环性能和效率随着恢复器而改善,但易于稳定性。针对蒸发器压力跟踪调节比例积分(PI)旁通阀控制,稳定循环。利用多蒸发器实验证明了具有恢复器的VCS的改进的循环电荷管理能力,并且计算了在蓄能器加热循环上的性能系数(COP)的改善。

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