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Development of computer code for prediction of pressure of PWR pressurizer for different transients

机译:不同瞬变PWR压力机压力预测计算机代码的开发

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A computer model has been developed, for the prediction of the pressure in the pressurizer under transient conditions. In the model three separate thermodynamic regions which are not required to be in thermal equilibrium have been considered. The mathematical model derived from the general conservation equations includes all of the important thermal-hydraulics phenomena occurring in the pressurizer: stratification of the hot water and incoming cold water, bulk flashing and condensation, wall condensation, and interfacial heat and mass transfer, etc. The bubble rising and rain-out models are developed to describe bulk flashing and condensation, respectively. To obtain the wall condensation rate, a one-dimensional heat conduction equation is solved by the pivoting method. The presented model will predict the pressure-time behavior of a PWR pressurizer during a variety of transients. The results obtained from the proposed mathematical model are in good agreement with available data on the CHASHMA nuclear power plant's pressurizer performance.
机译:已经开发了一种计算机模型,用于预测瞬态条件下加压器中的压力。在模型中,已经考虑了不需要处于热平衡的三个单独的热力学区域。源自通用保护方程的数学模型包括在加压器中发生的所有重要热液压现象:热水和进入冷水的分层,散装闪烁,堵塞,壁冷凝和界面热量和传质等。泡沫上升和雨水模型分别用于描述批量闪烁和冷凝。为了获得壁冷凝率,通过枢转方法解决了一维导热方程。所提出的模型将预测各种瞬态过程中PWR压力器的压力 - 时行为。从拟议的数学模型获得的结果与Chashma核电站加压性能的可用数据一致。

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