首页> 外文会议>Fluids Engineering Conference Vol.2 Pt.D >CONDENSATION-INDUCED WATER HAMMER IN HORIZONTAL REFRIGERANT PIPE WITH WARM GAS ENTRY
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CONDENSATION-INDUCED WATER HAMMER IN HORIZONTAL REFRIGERANT PIPE WITH WARM GAS ENTRY

机译:带有水平进气的水平制冷管中的冷凝水锤

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Careful experiments have been conducted for the purpose of investigating the phenomenon of condensation-induced waterhammer in an ammonia refrigeration system. To initiate a waterhammer event warm ammonia gas was introduced over static subcooled ammonia liquid placed in a horizontal 146.3 mm diameter carbon steel pipe 6.0 m in length. By means of fast response piezoelectric pressure transducers and a high speed data acquisition system rapid dynamic pressures were recorded whenever a shock event occurred. The occurrence of condensation-induced waterhammer depended upon three major variables; namely, (1) initial liquid depth, (2) liquid temperature, and (3) mass flow rate of warm gas. For given liquid depth and temperature, once the warm gas threshold conditions were exceeded shocks occurred with greater magnitude as the mass flow rate of gas input was increased. With adequate subcooling condensation-induced waterhammer occurred for initial liquid depths ranging from 25% to 95% of internal pipe diameter. The threshold mass flow rate of warm gas necessary to initiate waterhammer was greater as the initial liquid was lowered.
机译:为了研究氨制冷系统中冷凝引起的水锤现象,进行了仔细的实验​​。为了启动水锤事件,将热氨气引入放置在长度为6.0 m的水平146.3 mm直径碳钢管中的静态过冷氨液上。通过快速响应的压电压力传感器和高速数据采集系统,无论何时发生冲击事件,都可以记录快速的动态压力。凝结引起的水锤的发生取决于三个主要变量。即,(1)初始液体深度,(2)液体温度,以及(3)暖气体的质量流量。对于给定的液体深度和温度,一旦超过了热气阈值条件,则随着气体输入质量流量的增加,会发生更大程度的震动。在足够的过冷度下,初始液体深度为内管直径的25%至95%时,会发生冷凝引起的水锤。随着初始液体的降低,引发水锤所必需的暖气体的阈值质量流量会更大。

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