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DEVELOPMENT AND VALIDATION OF A NEW UNIVERSAL THROUGH FLOW METHOD FOR AXIAL COMPRESSORS

机译:轴流压气机通用通流方法的开发与验证

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This paper describes the development of a new through flow method for the analysis of axial multistage compressors. The method is based on a stream function approach and a finite element solution procedure. It includes a high-fidelity loss and deviation model with improved correlations and endwall boundary layer calculation. A radial distribution model of losses and a new spanwise mixing model are applied to simulate 3D flow effects. The calibration of the models is made by calculation a number of test cases with different configurations with the aim of achieving high accuracy and optimum robustness for each of the test cases considered.The code was applied to flow analysis and performance prediction of a newly developed gas turbine compressor. Comparison of the predicted results and measured test data for the overall compressor performance and a number of parameters under different operating conditions showed good agreement. The results of the validation confirm that this method based on calibrated correlations can be applied as a reliable tool for flow analysis and parameter variation during the design phase for a wide range of compressor configurations.
机译:本文介绍了一种用于分析轴向多级压缩机的新的通流方法的开发。该方法基于流函数方法和有限元求解程序。它包括一个高保真度损失和偏差模型,具有改进的相关性和端壁边界层计算。损耗的径向分布模型和新的翼展方向混合模型用于模拟3D流动效果。通过计算多个具有不同配置的测试用例来进行模型的校准,目的是为所考虑的每个测试用例实现高精度和最佳鲁棒性。 该代码已应用于新开发的燃气轮机压缩机的流量分析和性能预测。在不同工作条件下,压缩机整体性能和许多参数的预测结果和测得的测试数据的比较显示出很好的一致性。验证结果证实,该基于校准相关性的方法可以用作在各种压缩机配置的设计阶段进行流量分析和参数变化的可靠工具。

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