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An Iterative Method to Derive the Equivalent Centrifugal Compressor Performance at Various Operating Conditions: Part II: Modeling of Gas Properties Impact

机译:在各种工况下推导等效离心压缩机性能的迭代方法:第二部分:气体特性影响的建模

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摘要

This is the second part of a study conducted to model the aerothermodynamic impact of suction parameters and gas properties on a multi-stage centrifugal compressor’s performance. A new iterative method has been developed in the first part to derive the equivalent performance at various operating conditions. This approach has been validated to predict the compressor map at different suction pressures and temperatures using the design characteristics as reference values. A further case is included in this paper in order to emphasize the validity of the developed approach to obtain the performance characteristics at various gas compositions. The provided example shows that the performance parameters at different gas mixtures can be predicted to within ±1.34%. Furthermore, the conducted optimization in this paper reveals that the proposed method can be applied for the compressor design evaluation corresponding to the expected variation in suction conditions. Moreover, the examined case study demonstrates the effect of gas properties’ variation on the operating point and aerodynamic stability of the entire compression system. In order to achieve that, a simple approach has been established to assess the contribution of gas properties’ variation to the inefficient and unstable compressor performance based on the available operational data.
机译:这是对吸气参数和气体特性对多级离心压缩机性能的空气动力影响进行建模的研究的第二部分。在第一部分中开发了一种新的迭代方法,以得出在各种操作条件下的等效性能。该方法已经过验证,可以使用设计特征作为参考值来预测不同吸气压力和温度下的压缩机图。为了强调所开发方法在各种气体成分下获得性能特征的有效性,本文还包括另一种情况。所提供的示例表明,可以预测在不同气体混合物下的性能参数在±1.34%以内。此外,本文进行的优化表明,所提出的方法可以应用于与吸气条件的预期变化相对应的压缩机设计评估。此外,所检查的案例研究证明了气体特性的变化对整个压缩系统的工作点和空气动力学稳定性的影响。为了实现这一目标,已经建立了一种简单的方法来根据可用的运行数据评估气体特性变化对低效和不稳定的压缩机性能的贡献。

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