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Evaluations and modifications on Reynolds stress model in cyclone simulations

机译:旋风模拟中雷诺应力模型的评估和修改

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摘要

The prediction performance of the Reynolds stress model (RSM) on the flow field in a cyclone has been validated by using particle imaging velocimetry (PIV) experimental results. The validations mainly focus on two features of the flow information with averaged and fluctuating flow fields, which can mostly reflect the turbulent flow properties in the cyclone. The comparisons between predictions and measurements show that the RSM has good performance on the averaged flow field prediction, especially on the prediction of the mean tangential velocity. However, for the fluctuating flow field, the prediction performance of RSM is rather poor. The predicted root mean square (RMS) velocities are greatly underestimated. The standard model coefficients used in RSM have to be modified to enhance its accuracy when used to predict the fluctuating structure of the strong swirling flow in the cyclone. The recommended model coefficients give much better predictions on the fluctuating flow field than the standard coefficients, without decreasing the prediction accuracy on the mean flow field.
机译:雷诺应力模型(RSM)对旋风分离器内流场的预测性能已通过使用粒子成像测速(PIV)实验结果得到验证。验证主要集中在流动信息具有平均和波动流场的两个特征上,这两个特征大部分可以反映旋风分离器中的湍流特性。预测值与测量值之间的比较表明,RSM在平均流场预测(特别是在平均切向速度的预测)上具有良好的性能。但是,对于波动的流场,RSM的预测性能相当差。预测的均方根(RMS)速度被大大低估了。当用于预测旋风分离器中强旋流的波动结构时,必须修改RSM中使用的标准模型系数以提高其准确性。推荐的模型系数对波动的流场的预测要比标准系数好得多,而不会降低平均流场的预测精度。

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