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超声速民机低阻低声爆布局设计与优化方法研究

郑钦泽 梁煜 潘翀 王立峰

空气动力学学报2026,Vol.44Issue(5):88-103,16.
空气动力学学报2026,Vol.44Issue(5):88-103,16.DOI:10.7638/kqdlxxb-2025.0081

超声速民机低阻低声爆布局设计与优化方法研究

Research on the layout design and optimization method for low drag and low sonic boom supersonic civil aircraft

郑钦泽 1梁煜 2潘翀 3王立峰1

作者信息

  • 1. 北京航空航天大学 航空科学与工程学院,北京 100191
  • 2. 天目山实验室,杭州 311115||北京航空航天大学 无人系统研究院,北京 100191
  • 3. 北京航空航天大学 航空科学与工程学院,北京 100191||天目山实验室,杭州 311115
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摘要

Abstract

Supersonic civil aircraft have become one of the important directions for the future development of civil aviation.For the rapid conceptual design and performance optimization of supersonic civil aircraft layouts,an aerodynamic optimization framework for transonic and supersonic dual-cruise regimes was developed using a medium-fidelity solver based on the Euler equations with boundary layer correction to ensure computational efficiency while capturing key flow features.Using this framework,the baseline configuration was optimized,and the optimization results were selected from the Pareto optimal solution set in the dual-speed domain.Building on this,a high-precision low-drag adjoint optimization based on RANS equation for the wing-body combination was carried out under supersonic conditions,resulting in drag reductions of 43.4 counts at Ma=0.9 and 54.1 counts at Ma=1.8.To further address the multidisciplinary design challenge of simultaneously minimizing both drag and sonic boom intensity,a prediction method combining ray tracing technique and augmented Burgers equation was employed to simulate the propagation of near-field sonic boom signals.The ground waveforms were analyzed using the Mark VII criteria developed by Stevens to calculate the perceived loudness in decibel(PLdB)of the sonic boom.A multidisciplinary optimization framework considering both aerodynamic performance and sonic boom signals at different azimuthal angles was established to achieve a low-drag and low-sonic boom design.The optimization results showed that,compared to the baseline configuration,the final shape achieved comprehensive improvements in both drag and sonic boom performance throughout the entire sonic boom carpet region:The drag coefficient was reduced by 30.6 counts at Ma=0.9 and by 50.3 counts at Ma=1.8,while the average ground-level perceived loudness in decibel was reduced by 4.84 PLdB.

关键词

超声速客机/低阻低声爆/多学科优化/跨速域气动优化/伴随优化

Key words

supersonic civil aircraft/low drag low boom/multidisciplinary optimization/cross velocity scope aerodynamic optimization/adjoint optimization

分类

航空航天

引用本文复制引用

郑钦泽,梁煜,潘翀,王立峰..超声速民机低阻低声爆布局设计与优化方法研究[J].空气动力学学报,2026,44(5):88-103,16.

基金项目

天目山实验室"超声速客机关键技术研究及飞行验证"项目(TK-2024-D-004) (TK-2024-D-004)

空气动力学学报

0258-1825

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