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A new approach to treating the cell property averaging for a system heat transfer analysis

机译:一种用于系统传热分析的处理单元性能平均值的新方法

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In a thermal-hydraulic analysis for nuclear application, a one-dimensional analysis is widely used. In the analysis, averaging is required for the calculation of the cell property, and the accuracy of the averaging directly influences the accuracy of a numerical scheme. While the average value depends on the property distribution characteristics in a cell, conventional numerical schemes do not utilize the information. Instead, they rely on the use of a large number of nodes for their accuracy. There are many cases where the use of a large number of nodes is not practically allowed, especially in a transient system analysis, and the calculation results come to suffer from a large truncation error. To overcome the drawbacks of the conventional schemes, a new approach is introduced to reduce the truncation error by utilizing the distribution characteristics in a cell for the required averaging. The new approach places a node point at the boundary of a calculation cell and averaging is achieved from the properties at the inlet and outlet by using weighting factors that are determined from the cell property distribution. By this approach, it was-successful to describe more accurately even a transient where the property distribution was stepwise. Steady-state calculation for a once-through steam generator where the feedwater is heated to superheated steam was accurately carried out with only three calculational nodes. The characteristics and achievements of the new approach are described.
机译:在用于核应用的热工水力分析中,一维分析被广泛使用。在分析中,计算单元格属性需要求平均值,求平均值的准确性直接影响数值方案的准确性。虽然平均值取决于单元中的属性分布特性,但是常规的数值方案不使用该信息。相反,它们依赖于使用大量节点来保证准确性。在许多情况下,实际上不允许使用大量节点,尤其是在瞬态系统分析中,并且计算结果会出现较大的截断误差。为了克服常规方案的缺点,引入了一种新方法,通过利用单元中的分布特性进行所需的平均来减少截断误差。新方法将节点放置在计算单元的边界,并通过使用从单元属性分布确定的加权因子,根据入口和出口的属性进行平均。通过这种方法,即使在属性分布呈阶梯状的瞬态中也能够成功地进行更准确的描述。仅将三个计算节点精确地进行了一次直流蒸汽发生器的稳态计算,在该发生器中,给水被加热为过热蒸汽。描述了新方法的特点和成就。

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