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Assessment of Steady and Unsteady Full Annulus Simulations Predictivity for a Low-Speed Axial Fan at Load-Controlled Windmill

机译:负荷控制风车中低速轴流风机的稳态和非稳态全环空仿真预测性评估

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A steady mixing plane approach is compared with the time-averaged solution of an unsteady full annulus calculation for a conventional fan operating at load-controlled windmill. The objective is to assess the added value of a complete unsteady calculation compared with a more classical approach, especially concerning the effect of the spatial and temporal periodicity release in such an unusual operation as windmill. Experiment with global steady measurements and rotor radial characterizations was conducted. Numerical analysis demonstrates that windmilling global performances obtained with the time-averaged solution of the unsteady simulation are not far different from the steady case, especially in the rotor. Some differences arise in the stator, particularly regarding the velocity field. Temporal periodicity release in this row has clearly a significant effect on the flow unsteady response. A detailed analysis highlights that generic patterns of windmilling flows recorded on a steady approach are also reported on the unsteady case.
机译:对于在负载控制的风车上运行的常规风扇,将稳定混合平面方法与非稳态全环空计算的时间平均解决方案进行了比较。目的是评估与一种更经典的方法相比的完整非稳态计算的附加值,尤其是在风车这种异常操作中,涉及空间和时间周期性释放的影响。进行了整体稳态测量和转子径向表征的实验。数值分析表明,采用非稳态模拟的时间平均解获得的风车整体性能与稳态情况相差不大,尤其是在转子中。定子中会出现一些差异,特别是在速度场方面。此行中的时间周期性释放显然对流量不稳定响应具有重要影响。详细分析强调,在不稳定情况下,也报告了采用稳定方法记录的通用风车流量模式。

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