A structural model of the bionic blade was established using the reverse reconstruction technique to extract the noise reduction characteristics of the non-smooth trailing edge shape of the goshawk wing. The LES with the Smagorinsky model and the FW-H equation based on Lighthill acoustic theory were adopted to simulate the flow field and the sound field of the bionic non-smooth trailing edge blade and the smooth blade. The aerodynamic noise control mechanism of the bionic tooth shaped trailing edge blade was examined on the basis of the analysis of the influence of the bionic tooth shaped structure on the trailing edge flow field. The results show that compared with the smooth blade
the total A-weighted sound pressure level of the bionic tooth shaped trailing edge blade decreases by 9.8 dB. The bionic structure changes the distribution of the peak aerodynamic noise
reduces the peak size
and in most of the frequency range
the aerodynamic noise drops. The bionic non-smooth trailing edge of the blade changes the location of vortex shedding in the different cross-section and increases the distance between the corresponding vortex centers
thus suppressing the chaotic flow in the wake region effectively. Therefore
for the bionic blade
the unsteady pressure pulsation on the blade surface is inhibited and the aerodynamic noise caused by the wake vortex is reduced.
FANG Kaixiang. Simulation of inside flow field and noise forecast for a fan based on fluent 6.0 [J]. Jiangsu University of Science and Technology, 2008, 29(4): 42-47.
TAREK M, SEUNG O. A study of impeller-diffuser-volute interaction in a centrifugal fan [J]. ASME Journal of Turbomachinery, 2005, 127(5): 84-90.
SU Qiang, CHEN Hualing. Research on mechanism and reduction of noise for forward curved blade centrifugal fan: part 2 experiment and optimum study of the rectifier screen used as noise reduction [J]. Noise and Vibration Control, 1995, 15(2): 14-18.
陈坤. 仿生耦合风机叶片模型降噪与增效研究 [D]. 吉林: 吉林大学, 2009.
刘庆萍. 轴流风机叶片仿生降噪研究 [D]. 吉林:吉林大学, 2006.
LIU Q, QI D. Computation of aerodynamic noise of centrifugal fan using large eddy simulation approach, acoustic analogy, and vortex sound theory [J]. Mechanical Engineering Science, 2007, 221(5):1321-1332.
MA Jianfeng, YUAN Minjian. Experimental and numerical study of aeroacoustics of a centrifugal fan with non-isometric blade impeller [J]. Noise and Vibration Control, 2008, 100(3): 86-90.
SMAGORINSKY J. General circulation experiments with the primitive equations[J]. The Basic Experiment, 1963, 91(3): 99-164.
MENTER F R. Two-equation eddy-viscosity turbulence models for engineering applications[J]. AIAA Journal, 1994, 32(8): 1598-1605.
GREGORY N, O'REILLY C L. Low-speed aerodynamic characteristics of NACA 0012 aerofoil sections, including the effects of upper-surface roughness simulation hoar frost, R M 3726 [R]. Washington DC, USA: NASA, 1970.
Study on Effects of Double-Arc Non-Uniform Blades on the Flow Control and Aerodynamic Performance of Multi-Blade Centrifugal Fan
Steady and Pulsed Vortex Generator Jets Control of Flow Separation in Rectangle Diffuser
Large-Eddy Simulation on Boundary Separation of High-Lift Low-Pressure Turbine Blade with Synthetic Jet Control
Study on the Special Vortical Structure Development During Flow Separation Control by VGJs in Boundary Layer of Flat Plate with Adverse Pressure Gradient
Numerical Investigation to Performance of Centrifugal Impeller with Vortex Generator Jets
Related Author
LIU Xiaomin
JIANG Jiwu
TIAN Chenye
MA Yanpeng
PENG Xiaokang
张荻 1
2
樊涛 1
Related Institution
Midea Group Kitchen and Hot Water Division
School of Energy and Power Engineering, Xi’an Jiaotong University
Shanghai Electric Power Generation Equipment Co. Ltd.