J. O-O. Adeyeye, M. J. M. Bernal and K. E. Pitman
(1985). An Improved Boundary Integral Equation Method for
Helmholtz Equations, International Journal for Numerical Methods in
Engineering, 21, 779-787.
A. Ali, C. Rajakumar and S. M. Yunus (1991). On the
Formulation of the Acoustic Boundary Element Eigenvalue Problems,
International Journal of Numerical Methods in Engineering,
31, 1271-1282.
S. Amini, P. J. Harris and D. T. Wilton (1992).
Coupled Boundary and Finite Element Methods for the Solution of the
Dynamic Fluid-Structure Interaction Problem, in Lecture Notes in
Engineering 77,
Springer-Verlag.
R. P. Banaugh and W. Goldsmith (1963). Diffraction
of Steady Acoustic Waves by Surfaces of Arbitrary Shape,
Journal of the Acoustical Society of America,
bf 35(10), 1590-1601.
P. K. Banerjee, S. Ahmad and H. C. Wang (1988).
A New BEM
Formulation for the Acoustic Eigenfrequency Analysis, International
Journal for Numerical Methods in Engineering, 26, 1299-1309.
W. A. Bell, W. L. Meyer and B.T. Zinn (1977). Predicting
the Acoustics of arbitrarily shaped bodies using an integral approach,
AIAA Journal, 15(6), 813-820.
J. Ben Mariem and M. A. Hamdi (1987). A new Boundary
Element Method for Fluid-Structure Interaction Problems, International
Journal of Numerical Methods in Engineering, 24, 1251-1267.
R. J. Bernhard, B. K. Gardner, C. G. Mollo and
C. R. Kipp (1987). Prediction of Sound Fields in Cavities Using
Boundary-Element Methods, AIAA Journal, 25, 1176-1183.
H. Brakhage and P. Werner (1965). [U\ddot]ber das
Dirichletsche Aubenraumproblem f[u\ddot]r die Helmholtzsche
Schwingungsgleichung, Archiv. der Math, 16, 325-329.
G. B. Brundrit (1964). A Solution to the Problem
of Scalar Scattering from a Smooth, Bounded Obstacle using Integral
Equations. Quarterly Journal of Mechanics and Applied Mathematics, Vol XVIII, Pt. 4,
473-489.
A. J. Burton and G. F. Miller (1971). The Application
of Integral Equation Methods to the Numerical Solution of some Exterior
Boundary Value Problems, Proc. Royal Society, London, A323,
201-210.
A. J. Burton (1973). The Solution of the Helmholtz Equation
in Exterior Domains using Integral Equations. NPL Report NAC30,
National Physical Laboratory, Teddington, Middlesex, UK.
C. Y. R. Cheng, A. F. Seybert and T. W. Wu (1991).
A Multidomain Boundary Element Solution for Silencer and Muffler
Performance Prediction. Journal of Sound and Vibration, 151(1), 119-129.
J. P. Coyette and K. R. Fyfe (1990). An Improved
Formulation for Acoustic Eigenmode Extraction from Boundary Element Models,
ASME Journal of Vibration and Acoustics, 112, 392-398.
G. De Mey (1976). Calculation of Eigenvalues of the
Helmholtz Equation by an Integral Equation, International Journal
for Numerical Methods in Engineering, 10, 59-66.
I. Harari and T. J. R. Hughes (1991). Finite
Element Methods for the Helmholtz Equation in an Exterior Domain:
Model Problems, Computer Methods in Applied Mechanics and
Engineering, 87, 59-96.
Jeong-Guon Ih, Bong-Ki Kim and Won-Sik Choo (1995).
Comparison of Eigenvalue Analysis Techniques in Acoustic
Boundary Element Method, Euro-Noise 95, 591-596.
C. J. C. Jones (1986). Finite Element Analysis
of Loudspeaker Diaphragm Vibration and Prediction of the Resulting
Sound Radiation, PhD thesis, Brighton Polytechnic, Brighton, UK.
M. A. Jones, L. A. Binks and D. J. Henwood (1991).
Finite Element Methods Applied to the Analysis of High Fidelity
Loudspeaker Transducers, Computers and Structures.
P. Juhl (1994). A Numerical Study of the
Coefficient Matrix of the Boundary Element Method Near
Characteristic Frequencies, Journal of Sound and Vibration,
175(1), 39-50.
C. R. Kipp and R. J. Bernhard (1987). Prediction
of Acoustical Behavior in Cavities using an Indirect Boundary Element
Method, ASME Journal of Vibration and Acoustics, 109, 22-28.
G. H. Koopman and H. Benner (1982). Method
for Computing the Sound Power of Machines based on the Helmholtz Integral,
The Journal of the Acoustical Society of America, 71(1), 78-89.
Oxford University Press, Oxford.
S. Kopuz and N. Lalor (1995). Analysis of
Interior Acoustic Fields Using the Finite Element Method and the
Boundary Element Method, Applied Acoustics, 45, 193-210.
R. Kussmaul (1969). Ein numeriches Verfahren zur
L[o\ddot]sung des Neumannschen Aubenraumproblems fur
die Helmholtsche Schwingungsgleichung. Computing4, 246-273.
P. Lancaster (1977). A Review of Numerical Methods
for Eigenvalue Problems Nonlinear in Parameter, Numerik und
Andwendungen von Eigenwertaufgaben und Verzweigungsproblemen (edited by
E. Bohl, L. Collatz and K. P. Hedeler) ISNM 38, Basel-Stuttgart, Birkhauser.
M. E. Laursen and M. Gellert (1978). Some Criteria
for Numerically Integrated Matrices and Quadrature Formulas for Triangles,
International Journal for Numerical Methods in Engineering12,
67-76.
I. C. Mathews (1986). Numerical Techniques for
three-dimensional steady state Fluid-Structure Interaction,
Journal of the Acoustical Society of America, 79(5), 1317-1325.
W. L. Meyer, W. A. Bell, B. T. Zinn and M. P. Stallybrass
(1978). Boundary Integral Solutions of three dimensional Acoustic
Radiation Problems, Journal of Sound and Vibration, 59(2),
245-262.
D. J. Nefske, J. A. Wolf and L. J. Howell (1982).
Structural-Acoustic Finite Element Analysis of the Automobile
Passenger Compartment: A Review of Current Practice, Journal
of Sound and Vibration, 80, 247-266.
D. J. Nefske and S. H. Sung (1985). Vehicle
Interior Acoustic Design using Finite Element Methods,
International Journal of Vehicle Design, 6(1), 24-39.
O. I. Panich (1965). On the Question of the Solvability
of the Exterior Boundary Problem for the Wave Equation and Maxwell's Equation,
Uspeki Mat. Nauk, 20, 221-226.
M. Petyt, J. Lea and G. H. Koopman (1976). A Finite
Element Method for Determining the Acoustic Modes of Irregular
Shaped Cavities, Journal of Sound and Vibration, 45(4), 495-502.
M. Petyt (1983). Finite Element Techniques for Acoustics,
in Theoretical Acoustics and Numerical Techniques edited by P. J. T
Filippi, Springer-Verlag.
J. J. do Rego Silva (1994). Acoustic
and Elastic Wave Scattering using Boundary Elements, Topics
in Engineering 18,
Computational Mechanics Publications, Southampton and Boston.
M. N. Sayhi, Y. Ousset and G. Verchery (1981).
Solution of Radiation Problems by Collocation of Integral Formulations
in terms of Single and Double Layer Potentials, Journal of Sound
and Vibration, 74(2), 187-204.
A. F. Seybert and T. K. Rengarajan (1987).
The use of CHIEF to obtain unique solutions for Acoustic
radiation using boundary integral equations,
Journal of the Acoustical Society of America, 81(5), 1299-1306.
A. F. Seybert and T. K. Rengarajan (1987).
Application
of the Boundary Element Method to Acoustic Cavity Response and
Muffler Analysis, ASME Journal of Vibration, Acoustics, Stress, and
Reliability in Design, 119, 15-21.
T. Terai (1980). On the Calculation of Sound Fields around
three-dimensional Objects by Integral Equation Methods, Journal
of Sound and Vibration, 69(1), 71-100.
G. R. C. Tai and R. P. Shaw (1974).
Acoustic-equation Eigenvalues and Eigenmodes for Arbitrary Domains,
Journal of the Acoustical Society of America, 56(3), 796-804.
D. T. Wilton (1978). Acoustic Radiation and Scattering
from Elastic Structures, International Journal for Numerical Methods
in Engineering, 13, 123-128.