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Variable geometry mixed flow turbine for turbochargers: an experimental study

机译:涡轮增压器的可变几何混合流涡轮机:实验研究

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摘要

This paper investigates a variable geometry (VG) mixed flow turbine with a novel, purposely designed pivoting nozzle vane ring. The nozzle vane ring was matched to the 3-dimensional aspect of the mixed flow rotor leading edge with lean stacking. It was found that for a nozzle vane ring in a volute, the vane surface pressure is highly affected by the flow in the volute rather than the adjacent vane surface interactions, especially at closer nozzle positions. The performance of the VG mixed flow turbine has been evaluated experimentally in steady and unsteady flow conditions. The VG mixed flow turbine shows higher peak efficiency and swallowing capacity at various vane angle settings compared to an equivalent nozzleless turbine. Comparison with an equivalent straight vane arrangement shows a higher swallowing capacity but similar efficiencies. The VG turbine unsteady performance was found to deviate substantially from the quasi-steady assumption compared to a nozzleless turbine. This is more evident in the higher vane angle settings (smaller nozzle passage), where there are high possibility of choking during a pulse cycle. The presented steady and unsteady results are expected to be beneficial in the design of variable geometry turbochargers, especially the ones with a mixed flow turbine
机译:本文研究了带有新颖的,经过专门设计的枢转喷嘴叶片环的可变几何形状(VG)混流涡轮机。喷嘴叶片环与带有稀薄堆积的混流转子前缘的三维尺寸相匹配。已经发现,对于蜗壳中的喷嘴叶片环,叶片表面压力受蜗壳中的流动的影响很大,而不是受到相邻叶片表面相互作用的影响,尤其是在喷嘴位置较近的情况下。 VG混流式涡轮机的性能已在稳态和非稳态流动条件下进行了实验评估。与等效的无喷嘴涡轮相比,VG混流涡轮在各种叶片角度设置下均显示出更高的峰值效率和吞咽能力。与同等直叶片布置的比较显示出更高的吞咽能力,但效率相似。与无喷嘴涡轮机相比,发现VG涡轮机的非稳态性能与准稳态假设大不相同。这在较高的叶片角度设置(较小的喷嘴通道)中更明显,在脉冲周期内很可能发生阻塞。预期的稳态和非稳态结果将对可变几何涡轮增压器的设计特别是混合流涡轮增压器的设计有益。

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