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Modification of Centrifugal Impeller and Effect of Impeller Extended Shrouds on Centrifugal Compressor Performance

机译:离心叶轮的改进及叶轮延伸护罩对离心式压缩机性能的影响

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Efficient, compact centrifugal compressors with higher pressure ratios along with adequate surge margins are required for the future. Achieving these necessitates development of newer non-conventional diffuser designs and rotating vaneless diffusers is one such concept. One method of reducing the shear losses on the stationary vaneless diffuser sidewalls, with probable improved efficiency and flow range of low-to-medium specific speed stages, is the use of a "rotating diffuser". A particular type of rotating vaneless diffuser is forced rotating vaneless diffuser, in which the rotational speed equals that of the impeller and the rotating vaneless diffuser is integral with the centrifugal impeller which is created by extending the impeller disks beyond the blades. In the present paper, the effect of extended shroud by 10% with impeller exit diameter are analysed on flow diffusion and performance and compared with stationary vaneless diffuser. The higher static pressure rise with reduced losses and increased efficiency is achieved by shroud extension.
机译:未来需要高效的,具有较高压力比的紧凑型离心式压缩机以及适当的浪涌边距。实现这些需要开发较新的非传统扩散器设计,并旋转无语的漫射器是这样的概念。一种减少静止无差漫射器侧壁上的剪切损耗的方法,具有可能的提高效率和低对介质特定速度级的流量范围,是使用“旋转扩散器”。一种特定类型的旋转无差漫射器被强制旋转无差的漫射器,其中旋转速度等于叶轮的旋转速度和旋转的无差扩散器与离心叶轮的一体相加,该离心叶轮是通过延伸超出叶片之外的叶轮磁盘而产生的离心叶轮。在本文中,在流量扩散和性能上分析了延伸的护罩延伸10%的效果,并与静止无径向扩散器相比。通过损耗降低和提高效率,通过护罩延伸实现较高的静压升高。

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