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EFFECT OF DEFLECTED INFLOW ON FLOWS IN A STRONGLY-CURVED 90 DEGREE ELBOW

机译:偏转流入在强弧90度弯头中流动的影响

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Wall pressure measurements and flow visualization were conducted for a 90 degree elbow with an axis curvature radius the same as its inner diameter (125 mm, R_c/D =1). Reynolds numbers 320,000 and 500,000, based on the inner diameter and bulk velocity, were examined. A deflected inflow, having an almost constant velocity slope, was introduced in the present study. The velocity at the inside was 20% faster than the bulk velocity in the plane one diameter upstream of the elbow inlet. Ensemble averaged pressure distributions showed that no difference of normalized pressure could be found in cases of Reynolds numbers of 320,000 and 500,000. Comparisons with a uniform inlet flow case [1] proved that a low-pressure region at the intrados of the elbow was weakened and that a high-pressure region outside strengthened in the deflected inflow case. The present case had a characteristic pressure distribution that the pressure downstream of the elbow increased at the inside until two diameters downstream from the elbow exit. Flow visualization concluded that the corresponding pressure increase was caused by a collision of a strengthened secondary flow convected from the extrados. The unsteady pressure distribution in the present case showed that a circumferential extent of a strongly fluctuating region in the inside and downstream of the elbow decreased, comparing with the uniform inlet flow case.[1] Power spectral density functions of pressures exhibited that the fluctuation having the Strouhal number (based on the inner diameter and bulk velocity) of 0.6 existed in the downstream region of the elbow, which is 0.1 larger than that of the uniform inflow case.
机译:壁压测量和流量可视化对于具有轴曲率半径的90度弯头,与其内径相同(125mm,r_c / d = 1)。检查基于内径和散装速度的雷诺数320,000和500,000。在本研究中介绍了具有几乎恒定速度斜率的偏转流入。内部的速度比肘部入口上游的平面中的散装速度快20%。集合平均压力分布表明,在雷诺数为320,000和500,000的情况下,没有归一化压力的差异。具有均匀入口流动壳的比较证明,肘部尿布处的低压区域被削弱,并且在偏转的流入情况下外部加强的高压区域。当前情况具有特征的压力分布,即肘部下游的压力在内部增加,直到肘部出口下游的两径两径。流量可视化得出结论,相应的压力增加是由从extrados与来自extrabo的加强的二次流程的碰撞引起的。当前情况下的不稳定压力分布表明,与均匀的入口流量壳体相比,肘部内部和下游的强烈波动区域的周向范围。[1]压力的功率谱密度函数表明,在弯管的下游区域中存在具有0.6的斯特鲁姆数(基于内径和大容量)的波动,其比均匀流入壳体大0.1。

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