首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >EXPERIMENTAL INVESTIGATION OF PERIODICALLY UNSTEADY WAKE IMPACT ON THE SECONDARY FLOW IN A 1.5 STAGE FULL ANNULAR LPT CASCADE WITH MODIFIED T106 BLADING
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EXPERIMENTAL INVESTIGATION OF PERIODICALLY UNSTEADY WAKE IMPACT ON THE SECONDARY FLOW IN A 1.5 STAGE FULL ANNULAR LPT CASCADE WITH MODIFIED T106 BLADING

机译:1.5级全环形LPT级联改进T106叶片二次流动对非定常尾流影响的实验研究

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This paper transfers findings from linear cascade studies to the annular system. Experimental studies have been conducted on the newly designed 1.5 stage full annular rotating axial turbine rig at Chair of Thermal Turbomachinery, Ruhr-Universitat Bochum. Therefore, an existing large scale low speed test rig was retrofitted with newly designed T106~(RUB) low pressure turbine (LPT) blading, state-of-the-art measurement technologies and multi-dimensional traversing devices to allow for highly resolved measurements of unsteady wake stator flow interaction in both space and time. Incoming wakes are generated by a variable-speed driven rotor disk equipped with cylindrical bars. The measuring concept for an in-depth analysis of unsteady flow phenomena is presented and results from highly resolved time-averaged and time-resolved flow field traverses are discussed and compared. In detail the time-dependent interaction of periodically passing bar wakes with the boundary layers and secondary flow structures of the T106~(RUB) stator row is investigated. Special emphasis is put on time-varying dilatation and location of individual components of the vortex system and on potential flow separation along the blade suction surface. It is evaluated how these factors can contribute to a time-dependent homogenization of stator exit flow and a consequent loss reduction in the present configuration.
机译:本文将线性级联研究的结果转移到环形系统。在波鸿鲁尔大学热力涡轮机械的椅子上,对新设计的1.5级全环形旋转轴向涡轮机进行了实验研究。因此,对现有的大型低速试验台进行了改装,并采用了新设计的T106〜(RUB)低压涡轮(LPT)叶片,最新的测量技术和多维横动装置,以实现对高分辨率的测量。在空间和时间上都存在不稳定的尾流定子流相互作用。进入的尾流是由配有圆柱杆的变速驱动转子盘产生的。提出了用于非稳态流动现象的深入分析的测量概念,并讨论和比较了高度解析的时间平均和时间解析的流场遍历的结果。详细研究了周期性通过的棒流与T106〜(RUB)定子排的边界层和二次流结构的时变相互作用。特别强调涡流系统各个组件的时变膨胀和位置,以及沿叶片吸力面的潜在流动分离。评估了这些因素如何有助于定子出口流随时间的均匀化以及由此导致的本结构中的损耗减少。

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