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时域谐波平衡求解器中非物理解出现根源探析(英文)

Root Cause Investigation of a Non-physical Solution of a Time Domain Harmonic Balance Solver

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【作者】 张森王丁喜

【Author】 Sen Zhang;Ding-xi Wang;School of Power and Energy, Northwestern Polytechnical University;Shaanxi Key Laboratory of Internal Aerodynamics in Aero-engines, Northwestern Polytechnical University;

【机构】 School of Power and Energy, Northwestern Polytechnical UniversityShaanxi Key Laboratory of Internal Aerodynamics in Aero-engines, Northwestern Polytechnical University

【摘要】 The time domain harmonic balance method is an attractive reduced order method of analyzing unsteady flow for turbomachines. However, the method can admit non-physical solutions. Non-physical solutions were encountered from a three-blade-row compressor configuration in a time domain harmonic balance analysis. This paper aims to investigate the root cause of the non-physical solutions. The investigation involves several strategies, which include increasing the number of harmonics, increasing the number of time instants, including scattered modes,including the rotor-rotor interaction, and the use of a new method-the approximate time domain nonlinear harmonic method. Numerical analyses pertinent to each strategy are presented to reveal the root cause of the non-physical solution. It is found that the nonlinear interaction of unsteady flow components with different fundamental frequencies is the cause of the non-physical solution. The non-physical solution can be eliminated by incorporating extra scattered modes or using the approximate time domain nonlinear harmonic method.

【Abstract】 The time domain harmonic balance method is an attractive reduced order method of analyzing unsteady flow for turbomachines. However, the method can admit non-physical solutions. Non-physical solutions were encountered from a three-blade-row compressor configuration in a time domain harmonic balance analysis. This paper aims to investigate the root cause of the non-physical solutions. The investigation involves several strategies, which include increasing the number of harmonics, increasing the number of time instants, including scattered modes,including the rotor-rotor interaction, and the use of a new method-the approximate time domain nonlinear harmonic method. Numerical analyses pertinent to each strategy are presented to reveal the root cause of the non-physical solution. It is found that the nonlinear interaction of unsteady flow components with different fundamental frequencies is the cause of the non-physical solution. The non-physical solution can be eliminated by incorporating extra scattered modes or using the approximate time domain nonlinear harmonic method.

【基金】 National Natural Science Foundation of China(51976172);National Science and Technology Major Project (2017-II-0009-0023);China’s 111 project(B17037);Innovation Foundation for Doctor Dissertation of Northwestern Polytechnical University(CX2023056)
  • 【文献出处】 风机技术 ,Chinese Journal of Turbomachinery , 编辑部邮箱 ,2024年02期
  • 【分类号】TH45
  • 【下载频次】10
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