Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The Boundary Element Method in Acoustics: A Survey

View through CrossRef
The boundary element method (BEM) in the context of acoustics or Helmholtz problems is reviewed in this paper. The basis of the BEM is initially developed for Laplace’s equation. The boundary integral equation formulations for the standard interior and exterior acoustic problems are stated and the boundary element methods are derived through collocation. It is shown how interior modal analysis can be carried out via the boundary element method. Further extensions in the BEM in acoustics are also reviewed, including half-space problems and modelling the acoustic field surrounding thin screens. Current research in linking the boundary element method to other methods in order to solve coupled vibro-acoustic and aero-acoustic problems and methods for solving inverse problems via the BEM are surveyed. Applications of the BEM in each area of acoustics are referenced. The computational complexity of the problem is considered and methods for improving its general efficiency are reviewed. The significant maintenance issues of the standard exterior acoustic solution are considered, in particular the weighting parameter in combined formulations such as Burton and Miller’s equation. The commonality of the integral operators across formulations and hence the potential for development of a software library approach is emphasised.
Title: The Boundary Element Method in Acoustics: A Survey
Description:
The boundary element method (BEM) in the context of acoustics or Helmholtz problems is reviewed in this paper.
The basis of the BEM is initially developed for Laplace’s equation.
The boundary integral equation formulations for the standard interior and exterior acoustic problems are stated and the boundary element methods are derived through collocation.
It is shown how interior modal analysis can be carried out via the boundary element method.
Further extensions in the BEM in acoustics are also reviewed, including half-space problems and modelling the acoustic field surrounding thin screens.
Current research in linking the boundary element method to other methods in order to solve coupled vibro-acoustic and aero-acoustic problems and methods for solving inverse problems via the BEM are surveyed.
Applications of the BEM in each area of acoustics are referenced.
The computational complexity of the problem is considered and methods for improving its general efficiency are reviewed.
The significant maintenance issues of the standard exterior acoustic solution are considered, in particular the weighting parameter in combined formulations such as Burton and Miller’s equation.
The commonality of the integral operators across formulations and hence the potential for development of a software library approach is emphasised.

Related Results

66th Open Seminar on Acoustics Boszkowo, Poland, September 18 – 20, 2019
66th Open Seminar on Acoustics Boszkowo, Poland, September 18 – 20, 2019
The Open Seminar on Acoustics is an annual conference, the largest acoustics conference in the country. It has been bringing all Polish acousticians together for over sixty years. ...
Impedance Sensitivity Analysis Based on Discontinuous Isogeometric Boundary Element Method in Automotive Acoustics
Impedance Sensitivity Analysis Based on Discontinuous Isogeometric Boundary Element Method in Automotive Acoustics
Abstract Acoustic sensitivity analysis is an essential technique to determine the direction of structural-acoustic optimization by evaluating the gradient of the obj...
Active Acoustics in Concert Halls - A New Approach
Active Acoustics in Concert Halls - A New Approach
Abstract Active acoustics offers potential benefits in music halls having acoustical short-comings and is a relatively inexpensive alternative to physical modifications of ...
The impact of William J. Strong on the acoustics program at Brigham Young University
The impact of William J. Strong on the acoustics program at Brigham Young University
The early years of acoustics at Brigham Young University (BYU) include names such as Eyring, Fletcher, and Knudsen. However, for nearly 35 years, Bill Strong was the face of acoust...
Applications of Variable Acoustics
Applications of Variable Acoustics
This research investigates the use of variable acoustics and active acoustics system to improve the acoustics of the Paul H. Cocker Architecture Gallery at Ryerson University. Thes...
Virtual Acoustics
Virtual Acoustics
Abstract Virtual Reality (VR) systems are used in engineering, architecture, design and in applications of biomedical research. The component of acoustics in such VR systems enable...

Back to Top