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Investigation of the pressure ratio and efficiency of a turbocharger centrifugal compressor with a vaned diffuser

机译:带叶片扩压器的涡轮增压离心压缩机的压力比和效率研究

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This paper presents the performance of a conventional turbocharger centrifugal compressor with a vaneless diffuser with the primary aim to improve the pressure ratio and efficiency of the compression stage through the application of a low solidity vaned diffuser (LSVD). A cold-flow turbocharger test rig was used for this experiment, with impeller rotational speeds ranging from 40,000 rpm to 70,000 rpm. The tests were conducted using three sets of flat plate vanes designs consisting of 6, 8 and 10 vanes with consist blade angles of 6°, 12° and 18°. Due to the design of the fix leading edge (LE) and trailing edge (TE), the LSVD design produced several solidities ranging from 0.47 to 1.02. The vanes negative incidence angle was considered in this compressor test. All results were compared with those obtained from the standard vaneless diffuser configuration. The results found that the vanes design with six vanes showed the highest increase of magnitude of peak pressure ratio and efficiency at high rotational speeds of 60,000 and 70,000 rpm, compared to the vaneless diffuser. A designed blade angle of 18° also provided further influence on the overall performance of the turbocharger centrifugal compressor.
机译:本文介绍了具有无叶片扩压器的常规涡轮增压器离心压缩机的性能,其主要目的是通过应用低密度叶片扩压器(LSVD)来提高压力比和压缩级效率。冷流涡轮增压器试验台用于该实验,叶轮转速范围为40,000 rpm至70,000 rpm。使用三组由6、8和10个叶片组成的平板叶片设计进行测试,叶片叶片的夹角分别为6°,12°和18°。由于固定前缘(LE)和后缘(TE)的设计,LSVD设计产生了从0.47到1.02的多种强度。在此压缩机测试中考虑了叶片的负入射角。将所有结果与从标准无叶扩散器配置获得的结果进行了比较。结果发现,与无叶片扩压器相比,具有六个叶片的叶片设计在60,000和70,000 rpm的高转速下显示出峰值压力比的幅度和效率的最大增加。 18°的设计叶片角还进一步影响了涡轮增压器离心压缩机的整体性能。

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