首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >THREE-DIMENSIONAL FLOW ANALYSIS AND IMPROVEMENT OF SLIP FACTOR MODEL FOR FORWARD-CURVED BLADES CENTRIFUGAL FAN
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THREE-DIMENSIONAL FLOW ANALYSIS AND IMPROVEMENT OF SLIP FACTOR MODEL FOR FORWARD-CURVED BLADES CENTRIFUGAL FAN

机译:前弯曲叶片离心风机的三维流量分析及防滑因子模型改进

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The objective of this work is to develop improved slip factor model and correction method to predict flow through impeller in forward-curved centrifugal fan by investigating the validity of various slip factor models. Both steady and unsteady three-dimensional CFD analyses were performed with a commercial code to validate the slip factor model and the correction method. The results show that the improved slip factor model presented in this paper could provide more accurate predictions for forward-curved centrifugal impeller than the other slip factor models since the presented model takes into account the effect of blade curvature. The comparison with CFD results also shows that the improved slip factor model coupled with the present correction method provides accurate predictions for mass-averaged absolute circumferential velocity at the exit of impeller near and above the flow rate of peak total pressure coefficient.
机译:这项工作的目的是通过研究各种滑动因子模型的有效性,开发改进的滑动因子模型和校正方法,以通过叶轮通过叶轮预测流过叶轮。使用商业代码进行稳定和不稳定的三维CFD分析,以验证滑动因子模型和校正方法。结果表明,本文提出的改进的滑动因子模型可以为前向离心叶轮提供比其他滑动因子模型更准确的预测,因为所示的模型考虑了叶片曲率的效果。与CFD结果的比较还表明,与本校正方法耦合的改进的滑动因子模型,为叶轮出口处的叶轮出口处的质量平均绝对周向速度提供了精确的预测,靠近峰值总压力系数的流速。

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