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Coupling of Structural Dynamic and Acoustic Analyses Using the Fem and Bem

Coupling of Structural Dynamic and Acoustic Analyses Using the Fem and Bem PDF Author: Xin Han
Publisher:
ISBN:
Category :
Languages : en
Pages : 85

Book Description
Noise from structural vibration is a major consideration in the design and manufacturing of a product, such as an automobile, airplane, and other consumer goods. Acoustic simulation is an important step to optimize the performance of many new products early in the design stage rather than correcting the mistakes afterwards. Effective and efficient numerical modeling and simulation methods will be important tools for noise prediction during the design stage of products. This thesis work focuses on integrating the numerical methods in the prediction of noise from vibrating structures. To calculate the sound radiated from a vibrating structure, both a structural dynamic problem and an acoustic wave problem should be considered. In this study, the finite element method (FEM) is chosen for the structural dynamic analysis in order to calculate the natural frequencies and harmonic responses of the structure. The boundary element method (BEM) is used in the acoustic analysis of the structure to calculate the radiated sound field. In the BEM, only the surface of a sound radiating structure is discretized and the simulation of sound fields in unbounded domains is easy, yielding an efficient mesh generation and preprocessing. To couple the FEM analysis with the BEM analysis, a computer program, or translation code, is developed for mapping the model and velocity boundary condition (BC) for the acoustic analysis from the results of the dynamic analysis. Several element types in the FEM using the software ABAQUS (r) are implemented in the translation code and their performances are studied. Different BEM solvers in the software FastBEM Acoustics (r) developed earlier at the University of Cincinnati (UC) and based on the fast multipole method (FMM), the adaptive cross approximation (ACA) method and the fast conventional BEM are selected in this study. The correctness and feasibility of the developed code are verified using a pulsating sphere model and a vibrating plate model. Numerical results and analytical data are found to be in good agreement using the developed translation code. As a large-scale and practical application, a wind turbine model is also used to study the noise propagation on the ground due to the vibration of the turbine structure and the rotation of turbine blades. It is found that the coupled analysis with the FEM and BEM can model the noise prediction of large-scale structures effectively and efficiently.

Coupling of Structural Dynamic and Acoustic Analyses Using the Fem and Bem

Coupling of Structural Dynamic and Acoustic Analyses Using the Fem and Bem PDF Author: Xin Han
Publisher:
ISBN:
Category :
Languages : en
Pages : 85

Book Description
Noise from structural vibration is a major consideration in the design and manufacturing of a product, such as an automobile, airplane, and other consumer goods. Acoustic simulation is an important step to optimize the performance of many new products early in the design stage rather than correcting the mistakes afterwards. Effective and efficient numerical modeling and simulation methods will be important tools for noise prediction during the design stage of products. This thesis work focuses on integrating the numerical methods in the prediction of noise from vibrating structures. To calculate the sound radiated from a vibrating structure, both a structural dynamic problem and an acoustic wave problem should be considered. In this study, the finite element method (FEM) is chosen for the structural dynamic analysis in order to calculate the natural frequencies and harmonic responses of the structure. The boundary element method (BEM) is used in the acoustic analysis of the structure to calculate the radiated sound field. In the BEM, only the surface of a sound radiating structure is discretized and the simulation of sound fields in unbounded domains is easy, yielding an efficient mesh generation and preprocessing. To couple the FEM analysis with the BEM analysis, a computer program, or translation code, is developed for mapping the model and velocity boundary condition (BC) for the acoustic analysis from the results of the dynamic analysis. Several element types in the FEM using the software ABAQUS (r) are implemented in the translation code and their performances are studied. Different BEM solvers in the software FastBEM Acoustics (r) developed earlier at the University of Cincinnati (UC) and based on the fast multipole method (FMM), the adaptive cross approximation (ACA) method and the fast conventional BEM are selected in this study. The correctness and feasibility of the developed code are verified using a pulsating sphere model and a vibrating plate model. Numerical results and analytical data are found to be in good agreement using the developed translation code. As a large-scale and practical application, a wind turbine model is also used to study the noise propagation on the ground due to the vibration of the turbine structure and the rotation of turbine blades. It is found that the coupled analysis with the FEM and BEM can model the noise prediction of large-scale structures effectively and efficiently.

Finite Element and Boundary Methods in Structural Acoustics and Vibration

Finite Element and Boundary Methods in Structural Acoustics and Vibration PDF Author: Noureddine Atalla
Publisher: CRC Press
ISBN: 1466592885
Category : Technology & Engineering
Languages : en
Pages : 466

Book Description
Effectively Construct Integral Formulations Suitable for Numerical ImplementationFinite Element and Boundary Methods in Structural Acoustics and Vibration provides a unique and in-depth presentation of the finite element method (FEM) and the boundary element method (BEM) in structural acoustics and vibrations. It illustrates the principles using a

Engineering Vibroacoustic Analysis

Engineering Vibroacoustic Analysis PDF Author: Stephen A. Hambric
Publisher: John Wiley & Sons
ISBN: 1119953448
Category : Technology & Engineering
Languages : en
Pages : 540

Book Description
The book describes analytical methods (based primarily on classical modal synthesis), the Finite Element Method (FEM), Boundary Element Method (BEM), Statistical Energy Analysis (SEA), Energy Finite Element Analysis (EFEA), Hybrid Methods (FEM-SEA and Transfer Path Analysis), and Wave-Based Methods. The book also includes procedures for designing noise and vibration control treatments, optimizing structures for reduced vibration and noise, and estimating the uncertainties in analysis results. Written by several well-known authors, each chapter includes theoretical formulations, along with practical applications to actual structural-acoustic systems. Readers will learn how to use vibroacoustic analysis methods in product design and development; how to perform transient, frequency (deterministic and random), and statistical vibroacoustic analyses; and how to choose appropriate structural and acoustic computational methods for their applications. The book can be used as a general reference for practicing engineers, or as a text for a technical short course or graduate course.

The Scaled Boundary Finite Element Method

The Scaled Boundary Finite Element Method PDF Author: Chongmin Song
Publisher: John Wiley & Sons
ISBN: 1119388457
Category : Science
Languages : en
Pages : 775

Book Description
An informative look at the theory, computer implementation, and application of the scaled boundary finite element method This reliable resource, complete with MATLAB, is an easy-to-understand introduction to the fundamental principles of the scaled boundary finite element method. It establishes the theory of the scaled boundary finite element method systematically as a general numerical procedure, providing the reader with a sound knowledge to expand the applications of this method to a broader scope. The book also presents the applications of the scaled boundary finite element to illustrate its salient features and potentials. The Scaled Boundary Finite Element Method: Introduction to Theory and Implementation covers the static and dynamic stress analysis of solids in two and three dimensions. The relevant concepts, theory and modelling issues of the scaled boundary finite element method are discussed and the unique features of the method are highlighted. The applications in computational fracture mechanics are detailed with numerical examples. A unified mesh generation procedure based on quadtree/octree algorithm is described. It also presents examples of fully automatic stress analysis of geometric models in NURBS, STL and digital images. Written in lucid and easy to understand language by the co-inventor of the scaled boundary element method Provides MATLAB as an integral part of the book with the code cross-referenced in the text and the use of the code illustrated by examples Presents new developments in the scaled boundary finite element method with illustrative examples so that readers can appreciate the significant features and potentials of this novel method—especially in emerging technologies such as 3D printing, virtual reality, and digital image-based analysis The Scaled Boundary Finite Element Method: Introduction to Theory and Implementation is an ideal book for researchers, software developers, numerical analysts, and postgraduate students in many fields of engineering and science.

Dynamics of Coupled Structures, Volume 4

Dynamics of Coupled Structures, Volume 4 PDF Author: Matthew S. Allen
Publisher: Springer
ISBN: 3319549308
Category : Science
Languages : en
Pages : 356

Book Description
Dynamics of Coupled Structures, Volume 4: Proceedings of the 35th IMAC, A Conference and Exposition on Structural Dynamics, 2017, the fourth volume of ten from the Conference brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of the Dynamics of Coupled Structures, including papers on: Experimental Nonlinear Dynamics Joints, Friction & Damping Nonlinear Substructuring Transfer Path Analysis and Source Characterization Analytical Substructuring & Numerical Reduction Techniques Real Time Substructuring Assembling & Decoupling Substructures & Boundary Conditions

Modeling and Simulation Techniques in Structural Engineering

Modeling and Simulation Techniques in Structural Engineering PDF Author: Samui, Pijush
Publisher: IGI Global
ISBN: 152250589X
Category : Technology & Engineering
Languages : en
Pages : 544

Book Description
The development of new and effective analytical and numerical models is essential to understanding the performance of a variety of structures. As computational methods continue to advance, so too do their applications in structural performance modeling and analysis. Modeling and Simulation Techniques in Structural Engineering presents emerging research on computational techniques and applications within the field of structural engineering. This timely publication features practical applications as well as new research insights and is ideally designed for use by engineers, IT professionals, researchers, and graduate-level students.

Analysis of Random Structure-acoustic Interaction Problems Using Coupled Boundary Element and Finite Element Methods

Analysis of Random Structure-acoustic Interaction Problems Using Coupled Boundary Element and Finite Element Methods PDF Author: Carl S. Pates
Publisher:
ISBN:
Category : Boundary element methods
Languages : en
Pages : 266

Book Description


Analysis of Random Structure-Acoustic Interaction Problems Using Coupled Boundary Element and Finite Element Methods

Analysis of Random Structure-Acoustic Interaction Problems Using Coupled Boundary Element and Finite Element Methods PDF Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
ISBN: 9781722944001
Category :
Languages : en
Pages : 158

Book Description
A coupled boundary element (BEM)-finite element (FEM) approach is presented to accurately model structure-acoustic interaction systems. The boundary element method is first applied to interior, two and three-dimensional acoustic domains with complex geometry configurations. Boundary element results are very accurate when compared with limited exact solutions. Structure-interaction problems are then analyzed with the coupled FEM-BEM method, where the finite element method models the structure and the boundary element method models the interior acoustic domain. The coupled analysis is compared with exact and experimental results for a simplistic model. Composite panels are analyzed and compared with isotropic results. The coupled method is then extended for random excitation. Random excitation results are compared with uncoupled results for isotropic and composite panels. Mei, Chuh and Pates, Carl S., III Unspecified Center ACOUSTIC EXCITATION; BOUNDARY ELEMENT METHOD; FINITE ELEMENT METHOD; WAVE INTERACTION; ACOUSTIC COUPLING; COMPOSITE STRUCTURES; ISOTROPY; PANELS...

Topics in Modal Analysis I, Volume 7

Topics in Modal Analysis I, Volume 7 PDF Author: James De Clerck
Publisher: Springer Science & Business
ISBN: 3319047531
Category : Technology & Engineering
Languages : en
Pages : 343

Book Description
This seventh volume of eight from the IMAC - XXXII Conference, brings together contributions to this important area of research and engineering. The collection presents early findings and case studies on fundamental and applied aspects of Structural Dynamics, including papers on: Linear Systems Substructure Modelling Adaptive Structures Experimental Techniques Analytical Methods Damage Detection Damping of Materials & Members Modal Parameter Identification Modal Testing Methods System Identification Active Control Modal Parameter Estimation Processing Modal Data

The Finite Element Method Set

The Finite Element Method Set PDF Author: O. C. Zienkiewicz
Publisher: Elsevier
ISBN: 0080531679
Category : Technology & Engineering
Languages : en
Pages : 1863

Book Description
The sixth editions of these seminal books deliver the most up to date and comprehensive reference yet on the finite element method for all engineers and mathematicians. Renowned for their scope, range and authority, the new editions have been significantly developed in terms of both contents and scope. Each book is now complete in its own right and provides self-contained reference; used together they provide a formidable resource covering the theory and the application of the universally used FEM. Written by the leading professors in their fields, the three books cover the basis of the method, its application to solid mechanics and to fluid dynamics.* This is THE classic finite element method set, by two the subject's leading authors * FEM is a constantly developing subject, and any professional or student of engineering involved in understanding the computational modelling of physical systems will inevitably use the techniques in these books * Fully up-to-date; ideal for teaching and reference