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Performance of a drag transducer under simulated PWR refill/reflood flow conditions

机译:阻力传感器在模拟压水堆注水/回注水流条件下的性能

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A strain gage-based drag transducer developed to measure two-phase flow in simulated PWR (pressurized-water reactor) test facilities is discussed. The drag sensor was designed to sample a large amount of the flow with minimum disturbance to the flow, to be sensitive over a 1000-to-1 range, to be accurate over a 200:1 turndown ratio, and to survive in a hostile steam/water environment. The drag transducer consists of a unique combination of an elongated proving ring, a temperature-compensated, full-bridge strain gage configuration, and a drag target that utilized part of the test vessel internals. The drag body measurement system produced high-quality data for a variety of test conditions, which has led to a better understanding of the phenomena occurring during the refill/reflood stages of a postulated PWR loss-of-coolant accident.
机译:讨论了一种基于应变计的阻力传感器,该传感器用于在模拟PWR(压水堆)测试设备中测量两相流。阻力传感器设计用于在对流量影响最小的情况下对大量流量进行采样,在1000比1的范围内灵敏,在200:1的量程比下精度高,并能在敌对的蒸汽中生存/水环境。阻力传感器由细长的试验环,温度补偿的全桥应变计配置和利用测试容器内部零件的阻力靶组成的独特组合组成。阻力体测量系统为各种测试条件提供了高质量的数据,从而使人们更好地理解了假定的压水堆失水事故的加注/注水阶段所发生的现象。

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