首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >An Experimental Investigation of the Performance Impact of Swirl on a Turbine Exhaust Diffuser/Collector for a Series of Diffuser Strut Geometries
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An Experimental Investigation of the Performance Impact of Swirl on a Turbine Exhaust Diffuser/Collector for a Series of Diffuser Strut Geometries

机译:对一系列扩压器支杆几何形状的涡流对涡轮排气扩压器/集热器性能影响的实验研究

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A comprehensive experimental investigation was initiated to evaluate the aerodynamic performance of a gas turbine exhaust diffuseri'collector for various strut geometries over a range of inlet angle. The test was conducted on a 1/12th scale rig developed for rapid and accurate evaluation of multiple test configurations. The facility was designed to run continuously at an inlet Mach number of 0.40 and an inlet hydraulic diameter-based Reynolds number of 3.4 × 10~5. Multihole pneumatic pressure probes and surface oil flow visualization were deployed to ascertain the effects of inlet flow angle and strut geometry. Initial baseline diffuser-only tests with struts omitted showed a weakly increasing trend in pressure recovery with increasing swirl, peaking at 14 deg before rapidly dropping. Tests on profiled struts showed a similar trend with reduced recovery across the range of swirl and increased recovery drop beyond the peak. Subsequent tests for a full diffuser/ collector configuration with profiled struts revealed a rising trend at lower swirl when compared to diffuser-only results, albeit with a reduction in recovery. When tested without struts, the addition of the collector to the diffuser not only reduced the pressure recovery at all angles but also resulted in a shift of the overall characteristic to a peak recovery at a lower value of swirl. The increased operation range associated with the implementation of struts in the full configuration is attributed to the deswirling effects of the profiled struts. In this case, the decreased swirl reduces the flow asymmetry responsible for the reduction in pressure recovery attributed to the formation of a localized reverse-flow vortex near the bottom of the collector. This research indicates that strut setting angle and, to a lesser extent, strut shape can be optimized to provide peak engine performance over a wide range of operation.
机译:开始了一项全面的实验研究,以评估进气角度范围内各种支柱几何形状的燃气轮机排气扩散集热器的空气动力性能。测试是在1/12规模的钻机上进行的,该钻机是为快速,准确地评估多种测试配置而开发的。该设备设计为在入口马赫数为0.40且基于入口液压直径的雷诺数为3.4×10〜5的情况下连续运行。部署了多孔气动压力探头和表面油流可视化,以确定进气流角和支杆几何形状的影响。最初的仅使用扩压器的基线扩散器测试没有显示支撑,表明随着旋涡的增加,压力恢复的趋势微弱增加,在迅速下降之前在14度达到峰值。在异型支杆上进行的测试显示出类似的趋势,即整个旋流范围内的回收率降低,而超出峰值的回收率下降则有所增加。随后对带有轮廓支撑的扩散器/收集器配置进行的测试显示,与仅扩散器的结果相比,较低的涡流具有上升趋势,尽管回收率有所降低。在没有支柱的情况下进行测试时,将集热器添加到扩压器上不仅会降低所有角度的压力恢复能力,而且还会导致总体特性向较低旋涡值的峰值恢复能力转移。与在完整配置中实施支杆相关的增加的工作范围归因于异型支杆的旋转效应。在这种情况下,减小的涡流减小了导致压力恢复降低的流动不对称性,这归因于在收集器底部附近形成局部的逆流涡流。这项研究表明,可以优化支柱的安装角度,并在较小程度上优化支柱的形状,以在广泛的操作范围内提供最佳的发动机性能。

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