首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Numerical and experimental study on aerodynamic optimization of part-span connectors in the last stage of a low-pressure industrial steam turbine
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Numerical and experimental study on aerodynamic optimization of part-span connectors in the last stage of a low-pressure industrial steam turbine

机译:低压工业蒸汽轮机末段连接器气动优化的数值和实验研究

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摘要

Industrial steam turbines are operated over an extremely wide range of operating conditions. In order to ensure safe turbine operation, even in blade resonance condition, conical friction bolts are mounted between blade reinforcements of adjacent last stage low-pressure blades. These part-span connectors (PSC) provide blade damping and coupling. However, additional losses are generated, which affect the performance of the turbine. In this paper, a numerical and experimental study on aerodynamic optimization of PSCs is presented. State-of-the-art three-dimensional computational fluid dynamics (CFD) applying a nonequilibrium steam model is used to examine the wet steam flow in coupled last stage blading. The one-passage CFD model with parameterized PSC geometry features structured high-resolution hexahedral meshes. Experimental data of measurements with pneumatic multi-hole probes in an industrial steam turbine test rig are used for validation. According to the good agreement between measured and predicted flow field downstream of the last stage rotor blading, the CFD model is valid to capture the loss induced by the PSC. A numerical study on the aerodynamic effects of geometrical variations of PSCs concerning blockage area and shape is presented in this work. Based on this study, a performance assessment of different PSC designs is discussed and numerical results are compared to the loss coefficients predicted by Traupel's analytical correlation, which is widely used in industry.
机译:工业蒸汽轮机在非常广泛的运行条件下运行。为了确保涡轮机安全运行,即使在叶片共振条件下,锥形摩擦螺栓也安装在相邻的最后一级低压叶片的叶片加强件之间。这些部分跨度连接器(PSC)提供了叶片阻尼和耦合功能。但是,会产生额外的损失,这会影响涡轮的性能。在本文中,对PSC的空气动力学优化进行了数值和实验研究。使用非平衡蒸汽模型的最新三维计算流体动力学(CFD)用于检查末级联结叶片中的湿蒸汽流。具有参数化的PSC几何形状的单通道CFD模型具有结构化的高分辨率六面体网格。在工业蒸汽轮机试验台中使用气动多孔探头进行测量的实验数据用于验证。根据末级转子叶片下游的实测流场和预测流场之间的良好一致性,CFD模型可有效捕获PSC引起的损失。在这项工作中,对PSC的几何变化对阻塞面积和形状的空气动力学影响进行了数值研究。基于这项研究,讨论了不同PSC设计的性能评估,并将数值结果与Traupel解析相关性预测的损耗系数进行了比较,后者在工业中得到了广泛应用。

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