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Prediction of recirculation flow rate for icing prevention in water intake supply systems of nuclear power plants

机译:核电厂进水供水系统中防止结冰的再循环流量的预测

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During winter conditions, water intake structures represent one of many critical parts of hydraulic structures. Frazil ice deposits, accumulates and adhere to trash racks that can, in severe circumstances, completely prevent the water from entering the intake structure. One of the possible ways to cope with frazil ice blockage is by using waste heat of the discharge water, where a portion of the pumped water is recirculated back via a feedback loop to the intake structure. The recirculated water, serving as a heat source, can then somewhat warm the intake water and indirectly the air in the intake structure. In this work, an equation is derived that predicts the temperature of pumped water as a function of the recirculated-to-pumped water ratio and a case study on treating a water intake structure in a nuclear power plant is presented. The example demonstrates that, with a proper ratio between the pumped and recirculated flow rate, the formation of frazil ice and atmospheric icing could both be prevented.
机译:在冬季,取水结构是水力结构的许多关键部分之一。在严酷的环境下,巴西冰会沉积,积累并粘附在垃圾架上,这可以完全阻止水进入进水口结构。应对巴西冰封堵的可能方法之一是利用排放水的废热,其中一部分泵送水通过反馈回路再循环回到进气结构。然后,用作热源的再循环水可以一定程度地加热进水,并间接加热进水结构中的空气。在这项工作中,推导了一个方程式,该方程式预测了抽水温度与循环水/抽水比的函数关系,并提出了一个处理核电站取水结构的案例研究。该示例表明,在泵送流量和再循环流量之间具有适当的比率时,可以防止形成巴西冰和大气积冰。

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