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Prediction of Subchannel Mixing Downstream of Spacer Grids

机译:间隔网下游的子信道混合预测

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Subchannel thermal mixing is predicted downstream of two different spacer grid designs with and without mixing vanes using subchannel thermal hydraulic and CFD codes. The predicted subchannel temperatures at the end of the spacer grid span were compared to 5×5 rod bundle subchannel temperature measurements occurring at the end of the test section with uniform axial power shape. For the subchannel code, the Thermal Diffusion Coefficient was varied until a best fit was obtained to the subchannel temperature data for single phase flow conditions. After optimizing the Thermal Diffusion Coefficient, good agreement was observed between the subchannel thermal hydraulic code and the CFD code temperature predictions as well as the measurement data. The good agreement between CFD code predictions and test data suggest that CFD tools could replace 5×5 rod bundle mixing tests for single phase thermal hydraulic conditions.
机译:子信道热混合预测两个不同的间隔栅格设计的下游,使用子信道热液压和CFD码混合叶片。将间隔网跨度的末端的预测子通道温度与在试验部分的末端发生的5×5杆束子信道温度测量,以均匀的轴向动力形状。对于子信道代码,改变热扩散系数,直到对单相流条件的子信道温度数据获得最佳拟合。在优化热扩散系数之后,在子信道热液压代码和CFD码温度预测以及测量数据之间观察到良好的一致性。 CFD代码预测和测试数据之间的良好一致性建议CFD工具可以代替单相热液压条件的5×5杆束混合测试。

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