首页> 外文会议>ASME turbo expo: turbomachinery technical conference and exposition >ANALYSIS OF STEAM TURBINE BLADE TIP EXCITATION FORCES BY MEANS OF COMPUTATIONAL FLUID DYNAMICS AND EXPERIMENTAL CASCADE RESULTS
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ANALYSIS OF STEAM TURBINE BLADE TIP EXCITATION FORCES BY MEANS OF COMPUTATIONAL FLUID DYNAMICS AND EXPERIMENTAL CASCADE RESULTS

机译:用计算流体动力学和实验级联结果分析汽轮机叶片尖端的受力

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A semi-empirical steam excitation force model is presented for freestanding unshrouded blades. The model is resting on a superposition of the classical Thomas-Alford cross forces and additional fluid derived forces. The additional fluid derived forces are caused by static pressure modifications in the blade tip region and large-scale redistributions of the inflow velocity caused by the varying tip gap width due to eccentricity. The empirical model parameters are obtained by means of computational fluid dynamics (CFD) and experimental turbine cascade results. The Thomas-Alford cross force contribution is formulated by means of an analytical relation for the effective discharge coefficient. It is found, that the Thomas-Alford coefficient for the excitation cross-force increases if the blade tip gap decreases. That effect is caused by taking viscous flow effects into account, and it is in good agreement with available literature data. The direct force contribution results mainly from local pressure variation in the blade tip region, and it depends also on the mean tip gap width. A further effect is caused by an upstream redistribution of the velocity due to the varying tip gap width. This effect was discovered by Song and Martinez-Sanchez first, and it is confirmed experimentally by cascade measurements in the present paper.
机译:建立了独立式无遮盖叶片的半经验蒸汽激励力模型。该模型基于经典的Thomas-Alford交叉力和其他流体衍生力的叠加。额外的流体导出力是由叶片尖端区域中的静压变化以及由于偏心引起的尖端间隙宽度变化而导致的流入速度的大规模重新分布所引起的。通过计算流体动力学(CFD)和实验涡轮机级联结果获得经验模型参数。托马斯-阿尔福德交叉力的贡献是通过有效排放系数的解析关系来表示的。已经发现,如果叶片尖端间隙减小,则用于激励横向力的托马斯-阿尔福德系数就增大。该影响是由于考虑了粘性流动影响而引起的,并且与现有的文献数据非常吻合。直接作用力的贡献主要来自叶片尖端区域中的局部压力变化,并且还取决于平均尖端间隙宽度。由于尖端间隙宽度的变化,速度的上游重新分配引起了进一步的影响。这种效应是由Song和Martinez-Sanchez首先发现的,并在本文中通过级联测量得到了实验证实。

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