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Small Leak Detection by Measuring Surface Oscillation during Sodium-Water Reaction in Steam Generator

机译:通过测量蒸汽发生器中钠 - 水反应过程中表面振荡的小泄漏检测

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Small leak sodium-water reaction tests were conducted to develop various kinds of leak detectors for the sodium-heated steam generator in FBR. The super-heated steam was injected into sodium in a reaction vessel having a sodium free surface, simulating the steam generator. The level gauge in the reaction vessel generated the most reliable signal among detectors, as long as the leak rates were relatively high. The level gauge signal was estimated to be the sodium surface oscillation caused by hydrogen bubbles produced in sodium-water reaction.Experimental correlation was derived, predicting the amplitude as a function of leak rate, hydrogen dissolution ratio, bubble rise velocity and other parameters concerned, assuming that the surface oscillation is in proportion to the gas hold-up. The noise amplitude under normal operation without water leak was increased with sodium flow rate and found to be well correlated with Froud number. These two correlations predict that a water leak in a "MONJU" class (300 MWe) steam generator could possibly be detected by level gauges at a leak rate above 2 g/sec.
机译:进行小泄漏钠 - 水反应试验,以开发FBR中钠加热蒸汽发生器的各种泄漏探测器。将超加热的蒸汽注入具有自由表面的反应容器中的钠中,模拟蒸汽发生器。反应容器中的水平仪表在探测器之间产生最可靠的信号,只要泄漏速率相对较高。估计水平计信号是由钠 - 水反应中产生的氢气泡沫引起的钠表面振荡。推导出实验相关性,预测振幅,作为漏速,氢溶解比,泡沫升高速度和其他参数的函数,假设表面振荡与气体稳定成比例。使用钠流速没有漏水的正常操作下的噪声幅度增加,发现与Froud Number有很好的相关性。这两个相关性预测,“蒙布”类(300mWE)蒸汽发生器中的水泄漏可能在2g / sec高于2g / sec的泄漏速率下被水平仪检测到。

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