Compressor Maps and Coupling: Symmetry, Paradox, and Clarity

Benjamin Iwrey
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Abstract

The most common compressor map framework, referred to here as the β-framework, will be shown to suffer from limitations that grow more troublesome in the multiple-map environment. When maps are coupled in series in the β-framework, it is very common to find operating points that are physically unrealizable, but these cannot generally be avoided without first generating them. A feasible situation is described in which the β-framework leads to an apparent physical paradox. In the proposed S-framework, the map itself is recast in terms of independent variables (corrected speed and exit corrected flow) and dependent variables (inlet corrected flow and temperature ratio). The propagation of information in map coupling is split into an upstream-marching corrected flow ‘flux’ and a downstream-marching temperature ‘flux’. Finding the equilibrium operating point requires only finding a simple intersection between curves. The S-framework is then developed further into a more compact S’-framework that exhibits a natural set of qualitative symmetries. The S- and S’-frameworks are shown to simplify compressor map expression, resolve the problems shown with the β-framework, and aid intuition with regard to off-design phenomena. The resolution of the paradox using the S’-framework is a new description of multistage compressor performance hysteresis.
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压缩映射和耦合:对称性、悖论和清晰度
最常见的压缩器映射框架(这里称为β-框架)将受到限制,这些限制在多映射环境中变得更加麻烦。当地图在β-框架中串联耦合时,通常会发现物理上无法实现的操作点,但如果不首先生成它们,通常无法避免这些操作点。描述了一种可行的情况,其中β-框架导致一个明显的物理悖论。在建议的s框架中,地图本身根据自变量(校正速度和出口校正流量)和因变量(进口校正流量和温度比)进行了重铸。图耦合中的信息传播分为上游行进的修正流量“通量”和下游行进的温度“通量”。找到平衡工作点只需要找到曲线之间的简单交点。然后,S框架进一步发展成一个更紧凑的S框架,它展示了一组自然的定性对称性。S-和S ' -框架简化了压缩映射表达式,解决了β-框架所显示的问题,并有助于直观地了解非设计现象。利用S -框架解决这一悖论是对多级压气机性能迟滞的一种新的描述。
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