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Data Reduction of the Multistage Compressor Using S2 Stream Surface Solver

机译:使用S2流表面求解器的多级压缩机的数据减少

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Multistage compressor's experiment performance often differs from its numerical simulation, because the real flow held is much more complicated than the CFD's assumption of steady and uniform cascade inlet flow. While CED cannot provide a reliable prediction for multistage compressor, analyzing experiment's data could possibly be the only way to directly diagnose the compressor's flow held and performance. Using the testing data between rotors and stators, this program can solve the S2 stream surface field which is hard to directly observe in the compressor test rig. By calculating meridian field with experimental and formulated model, the solution reveals the essential performance parameter of each stage and each element such as flow coefficient, loading coefficient, efficient, etc. These solutions are the base of figuring out the weakest design of the compressor flow field, and the result reveals the subsequent modification quantitatively. Compressors performance can hardly reach the design goal without several such trial and error iterations.
机译:多级压缩机的实验性能通常与其数值模拟不同,因为持有的实际流量比CFD对稳定和均匀级联入口流动的假设更复杂。 CED不能为多级压缩机提供可靠的预测,而实验的数据可能是直接诊断压缩机流量和性能的唯一方法。使用转子和定子之间的测试数据,该程序可以解决S2流表面字段,这很难直接在压缩机试验台中观察。通过使用实验和配制模型计算经络场,该解决方案揭示了每个阶段的基本性能参数和每个元素,例如流量系数,装载系数,高效等。这些解决方案是计算压缩机流最薄弱的设计的基础场,结果显示随后的修改。压缩机性能几乎无法达到设计目标,而无需几个这样的试验和错误迭代。

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