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EXPERIMENTAL AND NUMERICAL FLOW ANALYSIS OF LOW-SPEED FANS AT HIGHLY LOADED WINDMILLING CONDITIONS

机译:高风速条件下低速风机的实验和数值流分析

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This paper aims for the analysis of experimental and numerical results of windmilling flow topologies far from freewheeling condition. Two fans were investigated: a baseline design and an innovative one meant to reach good performance in both compressor and turbine modes. Experiments are conducted with global and local characterizations to determine energy recovery potential and local loss mechanisms. The numerical study is carried out with mixing plane steady simulations, the results of which are in fair agreement with experimental data. The difference of local topology between freewheeling and highly loaded windmill demonstrates that classical deviation rules such as Carter's are not well-suited to highly loaded windmilling flows. Finally, under certain conditions, the minor influence of the sta-tor on the rotor topology indicates that non rotating elements can be considered as loss generators.
机译:本文旨在分析远离续流条件的风磁性流动拓扑的实验性和数值结果。调查了两个粉丝:基线设计和创新的一个意味着在压缩机和涡轮机模式下达到良好的性能。通过全局和局部表征进行实验,以确定能量恢复潜力和局部损失机制。使用混合平面稳定模拟进行了数值研究,其结果与实验数据公正。续流和高负荷风车之间的当地拓扑的差异表明,诸如卡特等古典偏差规则并不适合高负载的风车流动。最后,在某些条件下,STA-TOR在转子拓扑上的微小影响表明,不旋转元件可以被认为是损耗发生器。

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