首页> 外文会议>ASME international mechanical engineering congress and exposition >DESIGN OF A SINGLE-STAGE CENTRIFUGAL COMPRESSOR AND NUMERICAL INVESTIGATION OF SIMULTANEOUS ADJUSTMENT OF INLET GUIDE VANES AND DIFFUSER VANES
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DESIGN OF A SINGLE-STAGE CENTRIFUGAL COMPRESSOR AND NUMERICAL INVESTIGATION OF SIMULTANEOUS ADJUSTMENT OF INLET GUIDE VANES AND DIFFUSER VANES

机译:单级离心压缩机的设计以及进气导流叶片和扩散器叶片同时调节的数值研究

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A single stage centrifugal compressor has been designed for industrial use. Adjustable Inlet Guide Vanes (IGVs) and vaned diffusers were equipped to meet the requirement of large flow range, high efficiency and constant shaft speed. Both numerical calculations and experiments were implemented to get the performance of this new designed centrifugal compressor. The influence of adjustable IGVs and vaned diffusers on the stage performance characteristic was examined by numerical method. It is shown that numerical simulation results are close to the measured results and predict the stall limit well. The new centrifugal compressor has a comparatively high efficiency and wide operating range. Moreover, unilateral adjustment of either IGV pre-whirl angle or vaned diffuser stagger angle enables an increase in stable operating range opposed to the stage configuration with no adjustment. The combination of simultaneous adjustment of the IGVs and diffuser vanes can not only provide even wider flow range but also keep high efficiency. The identical working point can be operated at different IGV pre-whirl angles and diffuser stagger angles, hence the optimum adjustment schedule for the specified operating line was dug up to obtain an optimum efficiency. Detailed flow field analysis was performed to validated the suitable simultaneous adjustment combinations.
机译:单级离心压缩机已被设计用于工业用途。配备了可调节的进口导流叶片(IGV)和叶片扩压器,以满足大流量范围,高效率和恒定轴速的要求。数值计算和实验都得到了实现,从而获得了这种新设计的离心压缩机的性能。通过数值方法研究了可调式IGV和叶片式扩压器对载物台性能特性的影响。结果表明,数值模拟结果与实测结果较为接近,可以很好地预测失速极限。新型离心压缩机具有较高的效率和较宽的工作范围。此外,IGV预旋角或带叶片的扩压器交错角的单边调节都可以增加稳定的工作范围,这与无需调节的平台结构相反。同时调节IGV和扩散器叶片的组合不仅可以提供更大的流量范围,而且可以保持高效率。相同的工作点可以在不同的IGV预旋角和扩散器交错角下进行操作,因此针对特定的操作线挖掘了最佳的调节时间表,以获得最佳的效率。进行了详细的流场分析,以验证合适的同时调整组合。

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