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A DETAILED LOSS ANALYSIS METHODOLOGY FOR CENTRIFUGAL COMPRESSORS

机译:离心式压缩机的详细损失分析方法

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A deep understanding of loss mechanisms inside a turbomachine is crucial for the design and analysis work. Bv quantifying the various losses generated from different flow mechanisms, a targeted optimization can be carried out on the blading design. In this paper an evaluation method for computational fluid dynamics simulations has been developed to quantify the loss generation based on entropy production in the flow field. A breakdown of losses caused by different mechanisms (such as skin friction, secondary flow, tip clearance vortex and shock waves) is achieved by separating the flow field into different zones. Each zone is defined by the flow physics rather than bv geometrical locations or empirical correlations, which makes the method a more general approach and applicable to different machine types. The method has been applied to both subsonic and transonic centrifugal compressors, where internal flow is complex due to the Coriolis acceleration and the curvature effect. An evaluation of loss decomposition is obtained at various operational conditions. The impact of design modification is also assessed by applying the same analysis to an optimized design.
机译:对涡轮机内的损失机制深入了解设计和分析工作至关重要。 BV量化从不同流动机制产生的各种损耗,可以在叶片设计上进行目标优化。本文开发了一种计算流体动力学模拟的评估方法,以量化基于流场中的熵产生的损耗。通过将流场分成不同的区域来实现由不同机制(例如皮屑,二次流动,尖端间隙和冲击波)引起的损失崩溃。每个区域由流物理而不是BV几何位置或经验相关性定义,这使得该方法更通用并适用于不同的机器类型。该方法已应用于子系统和跨音管离心压缩机,其中内部流动由于科里奥利加速度和曲率效应是复杂的。在各种操作条件下获得对损耗分解的评估。通过对优化设计应用相同的分析,还评估了设计修改的影响。

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