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首页> 外文期刊>International Journal of Fluid Machinery and Systems >Flow-Feedback for Pressure Fluctuation Mitigation and Pressure Recovery Improvement in a Conical Diffuser with Swirl
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Flow-Feedback for Pressure Fluctuation Mitigation and Pressure Recovery Improvement in a Conical Diffuser with Swirl

机译:带有旋流的锥形扩散器中的流量反馈,可减少压力波动并改善压力恢复

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Our previous experimental and numerical investigations of decelerated swirling flows in conical diffusers have demonstrated that water jet injection along the symmetry axis mitigates the pressure fluctuations associated with the precessing vortex rope. However, for swirling flows similar to Francis turbines operated at partial discharge, the jet becomes effective when the jet discharge is larger than 10% from the turbine discharge, leading to large volumetric losses when the jet is supplied from upstream the runner. As a result, we introduce the flow-feedback approach for supplying the jet by using a fraction of the discharge collected downstream the conical diffuser. Experimental investigations on mitigating the pressure fluctuations generated by the precessing vortex rope and investigations of pressure recovery coefficient on the cone wall with and without flow-feedback method are presented.
机译:我们先前对锥形扩压器中减速涡流的实验和数值研究表明,沿对称轴的水射流注入可减轻与旋进旋涡绳相关的压力波动。然而,对于类似于在部分排放下运行的弗朗西斯涡轮机的涡流,当喷射流的排放量大于涡轮机排放量的10%时,该喷射流将变得有效,当从转轮上游供应喷射流时,会导致较大的体积损失。结果,我们引入了流反馈方法,以利用圆锥形扩散器下游收集的一部分放电来提供射流。进行了减轻旋涡绳产生的压力波动的实验研究,以及采用和不采用流反馈方法的锥壁压力恢复系数的研究。

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