首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Air-Standard Aerothermodynamic Analysis of Gas Turbine Engines With Wave Rotor Combustion
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Air-Standard Aerothermodynamic Analysis of Gas Turbine Engines With Wave Rotor Combustion

机译:波动转子燃气涡轮发动机的空气标准空气热力学分析

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The wave rotor combustor can significantly improve gas turbine engine performance by implementing constant-volume combustion. The periodically open and closed combustor complicates thermodynamic analysis. Key cycle parameters depend on complex gas dynamics. In this study, a consistent air-standard aero-thermodynamic model with variable specific heat is established. An algebraic model of the dominant gas dynamics estimates fill fraction and internal wave compression for typical port designs, using a relevant flow Mach number to represent wave amplitudes. Nonlinear equations for thermodynamic state variables are solved numerically by Newton-Raphson iteration. Performance measures and key operating conditions are predicted, and a quasi-one-dimensional computational model is used to evaluate the usefulness of the algebraic model.
机译:波轮燃烧器通过实现恒定体积燃烧,可以显着提高燃气涡轮发动机的性能。定期打开和关闭的燃烧器使热力学分析复杂化。关键循环参数取决于复杂的气体动力学。在这项研究中,建立了具有可变比热的一致的空气标准空气热力学模型。主导气体动力学的代数模型使用相关的流量马赫数表示波幅值来估计典型端口设计的填充率和内部波压缩。热力学状态变量的非线性方程通过牛顿-拉夫森迭代法数值求解。预测了性能指标和关键操作条件,并使用了准一维计算模型来评估代数模型的有效性。

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