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Comparative Study of Unsteady Flows in a Transonic Centrifugal Compressor with Vaneless and Vaned Diffusers

机译:无叶片和叶片扩压器的跨音速离心压缩机非定常流动的比较研究

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To reduce vibration and noise level, the impeller anddiffuser blade numbers inside an industrial compressor aretypically chosen without common divisors. The shapes of volutes orcollectors in these compressors are also not axis-symmetric. Whenimpeller blades pass these asymmetric structures, the flow fieldin the compressor is time-dependent and three-dimensional. Toobtain a fundamental physical understanding of thesethree-dimensional unsteady flow fields and assess their impact onthe compressor performance, the flow field inside the compressorsneeds to be studied as a whole to include asymmetric and unsteadyinteraction between the compressor components. In the currentstudy, a unified three-dimensional numerical model was built for atransonic centrifugal compressor including impeller, diffusers,and volute. HFC 134a was used as the working fluid. Thethermodynamic and transport properties of the refrigerant gas weremodeled by the Martin-Hou equation of state and power laws,respectively. The three-dimensional unsteady flow field wassimulated with a Navier-Stokes solver using thek?εturbulent model. The overall performance parameters are obtainedby integrating the field quantities. Both the unsteady flow fieldand the overall performance are analyzed comparatively for eachcomponent. The compressor was tested in a water chiller systeminstrumented to obtain both the overall performance data and localflow-field quantities. The experimental and numerical resultsagree well. The correlation between the overall compressorperformance and local flow-field quantities is defined. Themethodology developed and data obtained in these studies can beapplied to the centrifugal compressor design and optimization.
机译:为了降低振动和噪音水平,通常选择工业压缩机内的叶轮和扩散器叶片编号,而无需共用除数。这些压缩机中​​的蜗壳或收集器的形状也不是轴对称的。当叶轮叶片通过这些不对称结构时,压缩机中的流场是时间相关的并且是三维的。为了获得对这些三维非稳态流场的基本物理理解并评估它们对压缩机性能的影响,需要整体研究压缩机内部的流场,以包括压缩机组件之间的非对称和非稳态相互作用。在本研究中,建立了一个跨音速离心压缩机的统一三维数值模型,包括叶轮,扩压器和蜗壳。使用HFC 134a作为工作流体。分别利用状态和功率定律的Martin-Hou方程对制冷剂气体的热力学和传输特性进行建模。利用纳维尔-斯托克斯求解器,使用三维湍流模型模拟了三维非定常流场。整体性能参数是通过对现场数量进行积分获得的。比较了每个组件的非稳态流场和整体性能。该压缩机在水冷却器系统中进行了测试,获得了整体性能数据和局部流场数量。实验和数值结果吻合良好。定义了整体压缩机性能与局部流场数量之间的相关性。在这些研究中开发的方法学和获得的数据可以应用于离心压缩机的设计和优化。

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