Wave and finite element;
Boundary element;
Vibroacoustic characteristics;
Curved surfaces;
STATISTICAL ENERGY ANALYSIS;
SOUND-TRANSMISSION LOSS;
FORCED RESPONSE;
BOUNDARY;
RADIATION;
PANELS;
D O I:
10.1016/j.jsv.2024.118402
中图分类号:
O42 [声学];
学科分类号:
070206 ;
082403 ;
摘要:
This paper presents a hybrid wave and finite element/boundary element method for predicting the vibroacoustic characteristics of complex panels characterised by an irregular cross-sectional shape with a non -flat upper surface. In this approach, the panels are treated as waveguides and only a small segment of the panel is modelled using finite elements. The mass and stiffness matrices of the segment are then post -processed to project the motion onto its cross-sectional boundaries interfacing with the surrounding fluids. The acoustic pressures in the fluids are modelled by applying Fourier transforms to the Helmholtz boundary integral equations in the wavenumber domain. For each wavenumber component, the pressures acting on the segment are transformed into external nodal forces by evaluating the virtual work performed by the surface pressure on the segment. The wave and finite element formulations are subsequently coupled to the discretised boundary integral equations to determine the response of the panel to acoustic wave excitation. The hybrid method for predicting dispersion curves and sound transmission is validated through comparisons with predictions obtained from both an analytical model and a wave -based method found in the literature. To demonstrate the practical utility of the approach, the hybrid method is employed to predict sound transmission through a corrugated sandwich panel, where developing an analytical model is difficult. The method provides accurate predictions at a low computational cost.
机构:
Zhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R China
Zhejiang Univ, State Key Lab Fluid Power & Mechatron Syst, Hangzhou 310027, Zhejiang, Peoples R ChinaZhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R China
Ye, Shaogan
Zhang, Junhui
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机构:
Zhejiang Univ, State Key Lab Fluid Power & Mechatron Syst, Hangzhou 310027, Zhejiang, Peoples R ChinaZhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R China
Zhang, Junhui
Xu, Bing
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机构:
Zhejiang Univ, State Key Lab Fluid Power & Mechatron Syst, Hangzhou 310027, Zhejiang, Peoples R ChinaZhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R China
Xu, Bing
Song, Wei
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机构:
Zhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R ChinaZhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R China
Song, Wei
Zhu, Shiqiang
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机构:
Zhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R ChinaZhejiang Univ, Ocean Coll, Zhoushan 316021, Peoples R China
机构:
Univ N Carolina, Dept Math, Chapel Hill, NC USA
Univ N Carolina, Dept Biomed Engn, Carolina Ctr Interdisciplinary Appl Math, Chapel Hill, NC USA
Univ N Carolina, McAllister Heart Inst, Chapel Hill, NC USAUniv N Carolina, Dept Math, Chapel Hill, NC USA
Griffith, Boyce E.
Luo, Xiaoyu
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机构:
Univ Glasgow, Sch Math & Stat, Glasgow, Lanark, ScotlandUniv N Carolina, Dept Math, Chapel Hill, NC USA
机构:
Gwangju Inst Sci & Technol, Sch Mech Engn, 123 Cheomdangwagi Ro, Gwangju 61005, South Korea
Korea Atom Energy Res Inst, 111,Daedeok Daero 989Beon Gil, Daejeon 34057, South KoreaGwangju Inst Sci & Technol, Sch Mech Engn, 123 Cheomdangwagi Ro, Gwangju 61005, South Korea
Goo, Seongyeol
Kook, Junghwan
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机构:
GN Audio AS & Jabra, Audio Res, R&D, Lautrupbjerg 7, DK-2750 Ballerup, DenmarkGwangju Inst Sci & Technol, Sch Mech Engn, 123 Cheomdangwagi Ro, Gwangju 61005, South Korea