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A transport model for the deterministic stresses associated with turbomachinery blade row interactions.

机译:与涡轮机械叶片行相互作用相关的确定性应力的传输模型。

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The unsteady process resulting from the interaction of upstream vortical structures with a downstream blade row in turbomachines can have a significant impact on the machine efficiency. A transport model assuming incompressible flow and using linear theory was developed to take this process into account in the computation of time-average multistage turbomachinery flows. The upstream vortical structures are transported by the mean flow of the downstream blade row, redistributing the time-average unsteady kinetic energy (Uke ) associated with the incoming disturbance.; The model was applied to compressor and turbine geometry. For compressors, the Uke associated with upstream 2-D wakes and 3-D tip clearance flows is reduced as a result of the interaction with a downstream blade row. This reduction results from inviscid effects as well as viscous effects and reduces the loss associated with the upstream disturbance. Any disturbance passing through a compressor blade row results in a smaller loss than if the disturbance was mixed-out prior to entering the blade row.; For turbines, the Uke associated with upstream 2-D wakes and 3-D tip clearance flows are significantly amplified by inviscid effects as a result of the interaction with a downstream turbine blade row. Viscous effects act to reduce the amplification of the Uke by inviscid effects but results in a substantial loss. Any disturbance passing through a turbine blade row results in a larger loss than if the disturbance was mixedout prior to entering the blade row.
机译:涡轮机中上游涡旋结构与下游叶片排相互作用产生的不稳定过程可能对机器效率产生重大影响。建立了假设不可压缩流并使用线性理论的运输模型,以在时间平均多级涡轮机械流的计算中考虑该过程。上游涡流结构通过下游叶片排的平均流量进行运输,从而重新分配与传入扰动相关的时间平均非稳态动能( Uke )。该模型已应用于压缩机和涡轮的几何形状。对于压缩机,由于与下游叶片排相互作用,与上游2-D尾流和3-D尖端间隙流相关的 Uke 减少了。这种降低是由于无粘性效应和粘性效应引起的,并减少了与上游干扰相关的损失。与在进入叶片排之前混合干扰相比,穿过压缩机叶片排的任何干扰所造成的损失都较小。对于涡轮机,由于与下游涡轮机叶片排相互作用而产生的无形影响,与上游2-D尾流和3-D尖端间隙流相关的 Uke 显着放大。粘性作用通过无粘性作用来减少 Uke 的扩增,但会导致大量损失。与在进入叶片排之前将干扰混合掉相比,穿过涡轮叶片排的任何干扰都会导致更大的损失。

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