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STRUT LOSSES IN A DIVERGING ANNULAR DIFFUSER WITH SWIRLING FLOW

机译:旋流扩散环扩散器中的压杆损失

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摘要

An experimental investigation into the overall influence of struts spanning a double divergent annular diffuser followed by a straight cored annular diffuser has been undertaken in order to determine the performance of various strut configurations over a wide range of inlet swirl conditions. Two strut profiles have been investigated in four and eight strut configurations. Results have shown that the presence of struts under no swirl conditions have a relatively small effect on the overall total pressure loss. Increasing the inlet swirl angle to 20° has shown that the struts are able to assist in recovery of the swirling flow such that the pressure recovery nearly approaches that without struts, despite increased total pressure losses. Performance at 40° swirl is highly dependent on strut profile; the higher thickness-to-chord ratio strut configurations show minimal decrease in pressure recovery compared to 20° swirl, while the lower thickness-to-chord ratio configurations experiences a significant decrease as the result of significant flow separation from the struts. The exit swirl number has been shown to correlate strongly with the strut profile shape, while the number of struts had only a secondary influence. The exit velocity profiles show significant distortions at 40° swirl, and as a result the ideal pressure recovery calculated from the inlet and exit profiles change with strut configuration at 40° swirl.
机译:为了确定在宽范围的进气涡流条件下各种支撑结构的性能,已经对跨过双发散环形扩压器然后是直芯环形扩压器的支撑杆的整体影响进行了实验研究。在四个和八个支柱配置中研究了两个支柱轮廓。结果表明,在无涡流条件下支撑杆的存在对总的总压力损失的影响相对较小。将进口涡流角增加到20°表明,支杆能够协助回旋流的恢复,从而尽管总压力损失增加,压力恢复也几乎接近没有支杆的情况。 40°旋流下的性能在很大程度上取决于撑杆的外形。与20°旋流相比,较高的厚度与弦比率的构架显示了最小的压力恢复降低,而较低的厚度与弦比率的构架经历了明显的流量分离。出口旋流数已显示出与支杆轮廓形状密切相关,而支杆的数量仅具有次要影响。出口速度曲线在40°涡旋下显示出明显的变形,因此,根据入口和出口曲线计算出的理想压力恢复会在40°涡旋下随支柱结构而变化。

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