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STUDY OF THE INFLUENCE OF AXIAL POWER DISTRIBUTION ON DRYOUT

机译:轴向功率分布对干燥影响的研究

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Axial power distribution is one of the parameters that influence the occurrence of the dryout in nuclear fuel assemblies. Experimental data indicate that this influence is quite substantial, ranging from few to above ten percent of the total power. Thus accurate prediction of the dryout power for various power distributions has important implications on the economy and safety of nuclear power plants. The difficulty with capturing the influence of that parameter stems from the fact that during reactor operation practically unlimited number of power shapes can occur. This fact makes it very difficult to investigate the effect experimentally, and an analytical approach is needed. Various methods have been proposed in the past to capture the effect of non-uniform power distribution on dryout. These approaches can be divided into several categories, where the two main ones are as follows: (a) methods based on introduction of a shape factor, which is calculated from the known shape of the power distribution; (b) methods using certain integral parameters, such as the boiling length and the annular flow length, which are expressed as functions of axial power distribution. In the present approach a simplified annular flow model is used, in which the dryout occurrence is based on the prediction of the disappearance of the liquid film. The dependence of the dryout power on the axial power shape is obtained in a general analytical form. Based on this analytical solution, a new set of terms that govern the dryout power in channels with various axial power distributions is proposed.
机译:轴向功率分布是影响核燃料组件中变干现象发生的参数之一。实验数据表明,这种影响是相当大的,占总功率的百分之几到百分之十以上。因此,准确预测各种配电的变干功率对核电厂的经济性和安全性具有重要意义。捕获该参数影响的困难源于以下事实:在反应堆运行期间,实际上可能出现无数个功率形状。这个事实使得很难通过实验研究这种效果,因此需要一种分析方法。过去已经提出了各种方法来捕获功率分布不均匀对变干的影响。这些方法可以分为几类,其中两种主要方法如下:(a)基于引入形状因数的方法,该形状因数是根据功率分布的已知形状计算得出的; (b)使用某些整体参数的方法,例如沸腾长度和环形流动长度,这些参数表示为轴向功率分布的函数。在本方法中,使用简化的环形流动模型,其中变干的发生是基于对液膜消失的预测。变干功率对轴向功率形状的依赖性以一般的分析形式获得。基于此分析解决方案,提出了一套新的术语来控制具有各种轴向功率分布的通道中的干透功率。

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