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Bond graph modeling of centrifugal compression systems

机译:离心压缩系统的键合图建模

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A novel approach to model unsteady fluid dynamics in a compressor network by using a bond graph is presented. The model is intended in particular for compressor control system development. First, we develop a bond graph model of a single compression system. Bond graph modeling offers a different perspective to previous work by modeling the compression system based on energy flow instead of fluid dynamics. Analyzing the bond graph model explains the energy flow during compressor surge. Two principal solutions for compressor surge problem are identified: upstream energy injection and downstream energy dissipation. Both principal solutions are verified in bond graph modelings of single compression system equipped with a surge avoidance system (SAS) and single compression system equipped with an active control system. Moreover, the bond graph model of single compressor equipped with SAS is able to show the effect of recycling flow to the compressor upstream states which improves the current available model. The bond graph model of a single compression system is then used as the base model and combined to build compressor network models. Two compressor networks are modeled: serial compressors and parallel compressors. Simulation results show the surge conditions in both compressor networks.
机译:提出了一种通过使用键图对压缩机网络中的非稳态流体动力学建模的新颖方法。该模型特别适用于压缩机控制系统的开发。首先,我们开发一个单一压缩系统的键图模型。键合图建模通过基于能量流而非流体动力学对压缩系统进行建模,从而为以前的工作提供了不同的视角。分析粘结图模型可以解释压缩机喘振期间的能量流。确定了压缩机喘振问题的两个主要解决方案:上游能量注入和下游能量耗散。两种主要解决方案均在配有防喘振系统(SAS)的单压缩系统和配有主动控制系统的单压缩系统的键合图模型中得到验证。此外,配备SAS的单压缩机的键合图模型能够显示再循环流到压缩机上游状态的影响,从而改善了当前可用的模型。然后,将单个压缩系统的键合图模型用作基础模型,并进行组合以构建压缩机网络模型。对两个压缩机网络进行了建模:串行压缩机和并行压缩机。仿真结果显示了两个压缩机网络中的喘振情况。

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