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The influence of clocking on unsteady forces of compressor and turbine blades

机译:计时对压缩机和涡轮叶片非定常力的影响

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摘要

An important part of the unsteady effects in turbomachinery is generated by the relative motion between rotor and stator airfoils. The main sources of unsteadiness due to the rotor-stator interaction are potential flow (or inviscid) interaction and viscous interaction. Recently, the concept of indexing, or clocking, has been introduced to increase the efficiency of turbine and compressor stages. Previous research on airfoil clocking has been confined to studies of efficiency variation. The present paper addresses the clocking effects on the variation of unsteady forces on compressor and turbine blades. Numerical simulation of compressor and turbine flow shows that the pressure amplitude on the airfoil surface increases when the clocking position corresponds to higher efficiencies. Based on the numerical results, it is hypothesized that, at the maximum efficiency clocking position, the inlet guide vane is intensifying the pressure response of the stator which then increases the potential flow interaction between the rotor and stator. This coupling resonance between the inlet guide vane and the stator, which occurs at maximum efficiency, energizes boundary layer, producing a reduction of airfoil losses.
机译:涡轮机械不稳定影响的重要部分是由转子和定子机翼之间的相对运动产生的。由于转子-定子相互作用而引起的不稳定的主要来源是潜在的流动(或无粘性)相互作用和粘性相互作用。最近,引入索引或计时的概念以提高涡轮和压缩机级的效率。先前关于机翼计时的研究仅限于效率变化的研究。本文讨论了计时效应对压缩机和涡轮叶片上非定常力变化的影响。压缩机和涡轮机流动的数值模拟表明,当时钟位置对应于更高的效率时,翼型表面上的压力幅度会增加。基于数值结果,可以假设在最大效率计时位置处,进口导流叶片会增强定子的压力响应,从而增加转子和定子之间的潜在流动相互作用。进气导流叶片和定子之间的这种耦合共振以最大效率发生,使边界层通电,从而减少了机翼损失。

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