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Transient characteristics of flow boiling in large micro-channel heat exchangers

机译:大型微通道换热器中流动沸腾的瞬态特性

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This study investigates both time-averaged and transient characteristics of large area micro-channel evaporators incorporated into an R-134a vapor compression loop that simulates thermal control for future space vehicles. The loop contains two separate micro-channel evaporators, one to simulate heat acquisition from the spacecraft crew and the other from the avionics. Both evaporators feature parallel 1×1 -mm~2 micro-channels, with the smaller crew evaporator yielding relatively low qualities, and the larger avionics evaporator both low and high qualities. Heat transfer measurement and high speed video are used to investigate variations of heat transfer coefficient with quality for different mass velocities and heat fluxes, as well as transient fluid flow and heat transfer behavior. Relatively low qualities in the crew evaporator are dominated by slug flow and the nucleate boiling mechanism. On the other hand, the avionics evaporator produces different flow regimes and heat transfer mechanisms depending on quality range, with low qualities associated with slug flow and dominated by nucleate boiling, and high qualities by annular flow and convective boiling. Further increases in quality trigger incipient dryout of the annular film and transition to mist flow. An important transient phenomenon that influences both fluid flow and heat transfer is a liquid wave composed of remnants of liquid slugs from the slug flow regime. The liquid wave serves to replenish dry wall patches in the slug flow regime and to a lesser extent the annular regime. Two-phase flow in the two evaporators shows clear signs of parallel-channel instability.
机译:这项研究调查了纳入R-134a蒸气压缩回路的大面积微通道蒸发器的时间平均和瞬态特性,该回路模拟了未来航天器的热控制。该回路包含两个单独的微通道蒸发器,一个蒸发器模拟从航天器乘员获得的热量,另一个模拟从航空电子设备获得的热量。两个蒸发器均具有平行的1×1 -mm〜2个微通道,较小的机组蒸发器产生相对较低的质量,而较大的航空电子蒸发器则同时具有低质量和高质量。传热测量和高速视频用于研究传热系数随质量,质量速度和热通量以及瞬态流体流动和传热行为的变化。乘员蒸发器中相对较低的质量主要由团状流和成核沸腾机理决定。另一方面,航空电子蒸发器根据质量范围产生不同的流态和传热机制,其中与团状流相关的质量较低,且以核沸腾为主,而环形流和对流沸腾的质量较高。质量的进一步提高会触发环形薄膜的初期变干并过渡到雾流。影响流体流动和传热的重要的瞬态现象是由来自团状流态的液态团状残余物组成的液体波。液波用于补充团状流态中的干壁斑块,并在较小程度上补充环形态。两个蒸发器中的两相流清楚显示出平行通道不稳定的迹象。

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