HB GroupEIT · Aeroacoustics and Turbulence Laboratory

03成果PUBLICATIONS

让探索有迹,让求知有回响。Traces of discovery. Echoes of inquiry.

我们的研究成果涵盖气动声学数值方法、复杂流动机理、高性能计算与工程应用。Our publications span computational aeroacoustics, complex-flow physics, high-performance computing and engineering applications.

RESEARCH PAPERS

以论文,记录探索的进展。Documenting discovery through research.

汇集期刊论文与会议论文,按年份呈现研究进展,支持关键词与类型检索。Journal articles and conference papers, ordered by year and searchable by keyword and type.

62条成果results

成果OUTPUTS2026

8
2026

Yu J, Zhao Y, Feng Y, Zhou X, Jiang H. Unsteady loss mechanisms in a boundary layer ingestion fan under inlet distortion. Flow, 2026, 6: E15.

2026

Wang Q, Shao M, Jiang H. Multi-DCU parallelization of the FW–H solver for aeroacoustic simulations. Computer Physics Communications, 2026, 327: 110284.

2026

Feng Y, McFarland DM, Shao M, Yu J, Jiang H. Vortex-induced vibration and wake modulation of a circular cylinder subjected to harmonic cross-flow perturbations. Ocean Engineering, 2026, 362: 126516.

2026

He L, Jiang H. Efficient Frequency-Domain Aeroacoustic Simulation of Gust Response Using Harmonic Balance Method. AIAA Journal, 2026, 64(7): 3869-3883.

2026

Han T, Lu H, McFarland DM, Jiang H. Fusion of FEA and SEA for mid-frequency acoustics in a variable-section duct: Impedance-based coupling and experimental validation. Journal of Computational and Applied Mathematics, 2026, 484: 117481.

2026

Zhao Y, Deng Y, Lu H, Jiang H. Deep-Learning-Based Impedance Eduction Method for Acoustic Liners with Flow. AIAA Journal, 2026, 64(3): 1399-1413.

2026

Yu J, Sun P, Wang C, Zhao W, Jiang H. Study of the influence of a non-axisymmetric stator on the aerodynamic performance of a fan–compressor system. Aerospace Science and Technology, 2026, 172: 111710.

2026

Yu H, Wang Q, Yu J, Shao M, Jiang H. Aerodynamic response and wake dynamics of a vertical axis wind turbine under synthetic von Kármán turbulent inflow. Ocean Engineering, 2026, 366: 127497.

成果OUTPUTS2025

2
2025

Wang Q, Shao M, Duan L, et al. Effect of compressibility on flow-induced noise predictions at low Mach numbers [J]. Physics of Fluids, 2025, 37(12): 126128.

2025

Wang Q, Duan L, Jiang H. On the prediction of flow-induced noise at low Mach numbers: A comparative study of compressible, weakly compressible, and incompressible models [J]. Physics of Fluids, 2025, 37(12): 126138.

成果OUTPUTS2024

5
2024

Deng, Y, Wang, Z, Zhou, T, Wu, J, and Jiang H*. Boundary-element analysis of the noise scattering for urban aerial mobility vehicles: Solver development and assessment. ASME. Journal of Vibration and Acoustics. 2024, 146(5): 051001.

2024

Shao M,Jiang H*,Chen S. Theory of the momentum source method for synthetic turbulence. Physics of Fluids, 2024, 36 (5): 056109.

2024

Cantos S, Mok K, Zhou P, Jiang H, Mao X, Zhong S, Zhang X. A numerical study of cyclist-cyclist aerodynamic interaction towards efficient overtaking strategy. Journal of Fluids Engineering, 2024, 146(2).

2024

Duan, L, Jiang, H. Flux reconstruction approach for long-time calculations of the linearized Euler equation. InterNoise, 2024.

2024

Zhao, Y, Zhong, S, Jiang, H. Physics-informed neural networks for efficient aeroacoustic computational based on two time sequence prediction models. InterNoise, 2024.

成果OUTPUTS2023

7
2023

Jiang H*. Exact momentum sources for gust injection in flow simulations. Physics of Fluids, 2023, 35(9): 096115.

2023

Jiang H*, Zhou T, Guo J, Chen W. Numerical investigation of the blocking effect of a short duct on propeller noise. The Journal of the Acoustical Society of America, 2023,153(5), 2575-2575.

2023

Li Y, Wu H, Jiang H, Zhong S, Zhang X. Computational aeroacoustics study of propellers with vibrational motion. AIAA Journal. 2023, 61(7):1-17.

2023

Wu H, Chen W, Jiang H, Zhong S*, Zhang X*. Experimental investigation of the effect of sectional airfoil profile deviation on propeller noise. Physics of Fluids, 2023, 35: 027104. (Editor’s Pick)

2023

Zhong S, Zhou P, Chen W, Jiang H, Wu H, Zhang X. An investigation of rotor aeroacoustics with unsteady motions and uncertainty factors. Journal of Fluid Mechanics, 2023, 956: A16.

2023

Shao M, Jiang H, Huang X. Numerical study on the haystack phenomenon of turbulence ingestion noise, InterNoise, 2023.

2023

Duan L, Jiang H. Numerical analysis of underwater acoustics in the presence of complex flow, InterNoise, 2023.

成果OUTPUTS2022

22
2022

Jiang H, Wu H, Chen W, Zhou P, Zhang X*, Zhou G, Chen B. Towards high-efficiency low-noise propellers: A numerical and experimental study. Physics of Fluids, 2022, 34(7): 076116.

2022

Jiang H, Zhang X*. An acoustic-wave preserved artificial compressibility method for low-Mach-number aeroacoustic simulations. Journal of Sound and Vibration, 2022, 516: 116505.

2022

Jiang H, Zhong S, Wu H, Zhang X*, Huang X, Zhou G, Chen B. Radiation modes of propeller tonal noise. Journal of Vibration and Acoustics, 2022, 144(2): 021009. (ESI Highly Cited Paper)

2022

Jiang H, Zhong S, Zhang X*, Huang X. Boundary element analysis of the fuselage scattering of drone noise. International Journal of Aeroacoustics, 2022, 21(1-2): 43-56.

2022

Zhou T, Jiang H*, Huang B. Quad-copter noise measurements under realistic flight conditions. Aerospace Science and Technology, 2022, 124: 107542.

2022

Chen W, Jiang H*, He W. Dipole source-based virtual three-dimensional imaging for propeller noise. Aerospace Science and Technology, 2022, 124: 107562.

2022

Chen W, Jiang H*, Huang X. Dynamic analysis of aeroacoustic hysteresis of a low-Reynolds-number airfoil. Physical Review Fluids, 2022, 7(9): 094401.

2022

Chen W, Jiang H*, Huang X. Super-resolution acoustic imaging. Applied Physics Letters, 2022, 120(11): 112201.

2022

Zhou T, Jiang H*, Sun X. Noise source imaging measurements for small-scale multi-propeller systems. Applied Acoustics, 2022, 194: 108801.

2022

Wu J, Jiang H, Ma Z*, Chen W*, Huang X. Numerical investigation of airfoil-rotor interaction at low Reynolds number. Physics of Fluids, 2022, 34(2): 025118. (Editor’s Pick)

2022

Wu H, Jiang H, Zhou P, Zhong S*, Zhang X*, Zhou G, Chen B. On identifying the deterministic components of propeller noise. Aerospace Science and Technology, 2022, 130: 107948.

2022

Zhou P, Zhong S, Li X, Li Y, Chen W, Jiang H, Zhang X*. Broadband trailing edge noise reduction through porous velvet-coated serrations. Physics of Fluids, 2022, 34(5): 057112.

2022

Liu Q, Liu Y*, Jiang H, Yang Y, Zhou P. Acoustic scattering by a finite plate with a poroelastic extension using the unified transform method. Journal of Sound and Vibration, 2022, 522: 116677.

2022

Sundeep S, Zhou P, Zheng C, Jiang H, Zhong S, Zhang X. Enhancing the noise reduction capability of serrations usinglow-profile vortex generators, InterNoise, 2022.

2022

Zhou P, Li X, Li Y, Jiang H, Guo J, Zhong S, Zhang X. Trailing edge noise reduction using velvety serration. AIAA/CEAS Aeroacoustics Conference, 2022.

2022

Zhong S, Zhou P, Jiang H, Wu H, Guo J, Zhang X. Theoretical study of the unsteady motion influence on rotor aerodynamic noise. AIAA/CEAS Aeroacoustics Conference, 2022.

2022

Tan Q, Bian H, Jiang H, Zhong S, Lo H, Zhang X. Community noise assessment of a delivery drone based on a flight simulation and noise assessment platform. Quiet Drones International e-Symposium, 2022.

2022

Li Y, Jiang H, Ma Z, Zhong S, Zhang X. Computational aeroacoustics of an urban air mobility vehicle using the acoustic preserved artificial compressibility method. Quiet Drones International e-Symposium, 2022.

2022

Wu H, Jiang H, Zhou, Zhong S, Zhang X. " Identification of deterministic components of propeller noise". Quiet Drones International e-Symposium, 2022.

2022

Ma Z, Wu H, Jiang H, Zhong S, Zhang X. "Acoustic measurement of multi-rotor drones in anechoic and hemi-anechoic chambers". Quiet Drones International e-Symposium, 2022.

2022

Cantos S, Jiang H, Zhong S, Zhang X. A numerical study of the aeroacoustics of shrouded propellers for urban air mobility vehicles. Quiet Drones International e-Symposium, 2022.

2022

Jiang H, Zhong S, Zhang X, Zheng C. Acoustic scattering in the noise prediction of flying urban air mobility. The Delft International Conference on Urban Air Mobility, 2022.

成果OUTPUTS2021

4
2021

Jiang H, Zhong S, Zhang X*, Huang X. Efficient storage and interpolation of acoustic transfer functions. Engineering Analysis with Boundary Elements, 2021, 124: 259-265.

2021

Jiang H, Huang X*. Spinning wave scattering from a flow pipe with serrations. Journal of Vibration and Acoustics, 2021, 143(4): 041012.

2021

Zhou P, Zhong S, Jiang H, Zhang X*, So R. Propulsive efficiency and efficacy of a pumping sail. Physics of Fluids, 2021, 33(10): 107105. (Feature on cover, Scilight)

2021

Liu Q, Liu Y, Jiang H, Yang Y, Zhou P. Effect of a poroelastic extension on acoustic scattering of a finite plate. AIAA Aviation Forum, 2021.

成果OUTPUTS2020

1
2020

Jiang H, Zhong S, Zhang X. Interpolation based acoustic transfer function for drone noise simulation. Quiet Drones International e-Symposium, 2020.

成果OUTPUTS2019

6
2019

Jiang H, Zhang X*, Huang X. Reduced-basis boundary element method for efficient broadband acoustic simulation. Journal of Sound and Vibration, 2019, 456: 374-385.

2019

Jiang H, Huang X*. Tonal fan-noise radiation from aero-engine bypass with serrated end treatments. Journal of Turbomachinery, 2019, 141(10): 101005.

2019

Zhong S, Jiang H, Ying W, Zhang X*, Huang X. An efficient computation of cascade-gust interaction noise based on a hybrid analytical and boundary element method. Journal of Sound and Vibration, 2019, 461: 114911.

2019

Zhou T, Jiang H, Sun Y, Fattah R, Zhang X, Huang B, Cheng L. Acoustic characteristics of a quadcopter under realistic flight conditions. AIAA/CEAS Aeroacoustics Conference, 2019.

2019

Zhong S, Jiang H, Ying W, Zhang X. An analytical model for the prediction of airfoil cascade-turbulence interaction noise. AIAA/CEAS Aeroacoustics Conference, 2019.

2019

Jiang H, Zhou T, Fattah R, Zhang X, Huang X. Multi-rotor noise scattering by a drone fuselage. AIAA/CEAS Aeroacoustics Conference, 2019.

成果OUTPUTS2018

2
2018

Jiang H, Lau A, Huang X*. Sound wave scattering in a flow duct with azimuthally non-uniform liners. Journal of Fluid Mechanics, 2018, 839: 644-662.

2018

Jiang H, Lau A, Huang X*. Surrogate model based liner optimization for aeroengines and comparison with finite elements. Journal of Vibration and Acoustics, 2018, 140(3): 034501.

成果OUTPUTS2017

2
2017

Jiang H, Lau A, Huang X*. An efficient algorithm of Wiener-Hopf method with graphics processing unit for duct acoustics. Journal of Vibration and Acoustics, 2017, 139(5): 054501.

2017

Jiang H, Huang X*. Efficient impedance eductions for liner tests in grazing flow incidence tube. Journal of Vibration and Acoustics, 2017, 139(3): 031002.

成果OUTPUTS2016

2
2016

Liu X, Jiang H, Huang X*, Chen S. Theoretical model of scattering from flow ducts with semi-infinite axial liner splices. Journal of Fluid Mechanics, 2016, 786: 62-83.

2016

Jiang H, Huang X. Impedance eduction with a theoretical model for sound propagation in a grazing impedance tube. AIAA/CEAS Aeroacoustics Conference, 2016.

成果OUTPUTS2015

1
2015

Liu X, Jiang H, Huang X. Theoretical study of sound propagation in lined duct with rigid splices using Wiener-Hopf Method. AIAA/CEAS Aeroacoustics Conference, 2015.

OPEN-SOURCE SOFTWARE

让研究方法,成为可用的工具。Research methods, ready to use.

分享实验室开发的开源计算软件,提供源码、使用文档与相关研究入口。Explore the laboratory’s open-source solvers, with source code, documentation and links to related research.

从非定常流动,计算远场声音。From unsteady flow to far-field sound.

EITFWH 是实验室的开源气动声学计算软件,基于 Ffowcs Williams–Hawkings(FW-H)方程,计算非定常流动产生的声辐射,为流动噪声分析提供可复用的求解工具。EITFWH is the laboratory’s open-source aeroacoustic solver. Based on the Ffowcs Williams–Hawkings (FW-H) equation, it computes acoustic radiation from unsteady flows and provides a reusable tool for flow-noise analysis.

FW-H 声学类比FW-H acoustic analogy

面向单极子、偶极子和四极子声源机制的声辐射计算。Acoustic radiation calculations for monopole, dipole and quadrupole source mechanisms.

多种求解模式Multiple solver modes

支持三维时域、三维频域和二维频域模块,按研究问题选择计算方式。Three-dimensional time-domain, three-dimensional frequency-domain and two-dimensional frequency-domain modules.

C++ 与 MPI 并行C++ and MPI parallelism

C++ 核心与 MPI 并行,支持并行数据读取;另有 DCU/GPU 版本加速 FW-H 积分阶段。A C++ core with MPI and parallel data reading. A separate DCU/GPU implementation accelerates the FW-H integration stage.

DCU / GPU 加速版本DCU / GPU implementation

开发:王启星、邵明宇、姜汉博 · 维护:王启星Developers Qixing Wang, Mingyu Shao and Hanbo Jiang · Maintainer Qixing Wang

相关介绍与更新Articles and updates软件介绍Software introduction并行数据读取更新Parallel data reading update