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INVESTIGATIONS OF THE FLOW THROUGH A HIGH PRESSURE RATIO CENTRIFUGAL IMPELLER

机译:通过高压比离心叶轮的流量的研究

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In an industrial research project of German and Swiss Turbo Compressor manufacturers a high pressure ratio centrifugal impeller was designed and investigated. Performance measurements and extensive laser measurements (L2F) of the flow field upstream, along the blade passage and downstream of the impeller have been carried out. In addition to that, 3D calculations have been performed, mainly for the design point. Results have been presented by Krain et al., 1995 and 1998, Eisenlohr et al., 1998 and Hah et al.,1999. During the design period of this impeller a radial blade at the inlet region was mandatory to avoid a rub at the shroud due to stress reasons. The measurements and the 3D calculations performed later, however, showed a flow separation at the hub near the leading edge due to too high incidence. Additionally a rather large exit width and a high shroud curvature near the exit caused a flow separation near the exit, which is enlarged by the radially transported wake of the already addressed hub separation. Changes to the hub blade angle distribution to reduce the hub incidence and an adaptation of the shroud blade angle distribution for the same impeller mass-flow at the design point were investigated by means of 3D calculations first with the same contours at hub and shroud; this was followed by calculations with a major change of the shroud contour including an exit width change with a minor variation of the hub contour. These calculations showed encouraging results; some of them will be presented in conjunction with the geometry data of the original impeller design.
机译:在德国和瑞士涡轮压缩机制造商的工业研究项目中,设计并研究了高压比离心叶轮。已经进行了沿着叶片通道和叶轮下游的流场的性能测量和广泛的激光测量(L2F)。除此之外,已经进行了3D计算,主要用于设计点。克莱恩等人,1995年和1998年,1998年,1999年,1998年,1999年。在该叶轮的设计期间,入口区域处的径向叶片是强制性的,以避免由于应力原因而在护罩处擦拭。然而,稍后执行的测量和3D计算在前缘的入射率太高时显示在枢纽附近的流动分离。另外,出口附近的出口宽度和高护罩曲率相当大的出口宽度导致出口附近的流动分离,其被已经解决的轮毂分离的径向运输的左右放大。变化到轮毂叶片角度分布,以减少发病毂和用于在设计点的相同的叶轮质量流量护罩叶片角度分布的适配通过3D计算第一与毂和护罩相同轮廓的手段进行了研究;随后是通过沟槽轮廓的主要变化的计算,包括出口宽度变化,具有毂轮廓的次要变化。这些计算显示了令人鼓舞的结果;其中一些将与原始叶轮设计的几何数据一起呈现。

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