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Counter-current flow limitations during hot leg injection in pressurized water reactors

机译:压水堆热腿注入过程中的逆流限制

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摘要

A one-dimensional model is presented to predict counter-current flow limitations during hot leg injection in pressurized water reactors. Different from previous models, it may also be applied in case of high Froude numbers of the liquid flow, such as to be expected in the case of emergency coolant injection through the hot leg. The model has been verified with an extensive experimental program performed in the WENKA test facility at the Forschungszentrum Karlsruhe. Typical flow regimes were investigated for a wide range of flow conditions, simulated with air and water at ambient pressure and temperature, in a simplified Pressurized Water Reactor (PWR) hot leg geometry. Depending on the water and air flow rates, flow phenomena such as a hydraulic jump and flow reversal were experimentally observed. The theoretical model shows that not only the nondimensional superficial velocities of liquid and gas, but also the Froude number of the liquid at the injection point and the Reynolds number of the gas play an important role for the prediction of flow reversal. In case of a high liquid inlet Froude number, a flow reversal could only be observed if the liquid flow became locally subcritical, i.e. if a hydraulic jump occurred in the channel. The flow reversal is predicted by the presented model with good accuracy.
机译:提出了一个一维模型来预测压水反应堆中热段注入过程中的逆流限制。与以前的型号不同,它也可用于高流量的弗洛德数的情况下,例如在通过热管紧急注入冷却剂的情况下。该模型已在位于卡尔斯鲁厄(Forschungszentrum Karlsruhe)的WENKA测试设施中通过广泛的实验程序验证。在简化的加压水反应堆(PWR)热压腿几何结构中,研究了在各种流动条件下的典型流态,并用空气和水在环境压力和温度下进行了模拟。根据水和空气的流速,通过实验观察到诸如水力跳跃和逆流的流动现象。理论模型表明,不仅液体和气体的无量纲表面速度,而且在注入点处的液体的弗洛德数和气体的雷诺数对预测流动逆流也起着重要的作用。在较高的液体入口弗洛德数的情况下,仅当液体流量局部变为亚临界状态时,即在通道中发生水力跃变时,才能观察到逆流。所提出的模型可以很好地预测流动逆转。

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