Sub-structure Coupling for Dynamic Analysis
Title | Sub-structure Coupling for Dynamic Analysis PDF eBook |
Author | Hector Jensen |
Publisher | Springer |
Pages | 231 |
Release | 2019-03-26 |
Genre | Science |
ISBN | 3030128199 |
This book combines a model reduction technique with an efficient parametrization scheme for the purpose of solving a class of complex and computationally expensive simulation-based problems involving finite element models. These problems, which have a wide range of important applications in several engineering fields, include reliability analysis, structural dynamic simulation, sensitivity analysis, reliability-based design optimization, Bayesian model validation, uncertainty quantification and propagation, etc. The solution of this type of problems requires a large number of dynamic re-analyses. To cope with this difficulty, a model reduction technique known as substructure coupling for dynamic analysis is considered. While the use of reduced order models alleviates part of the computational effort, their repetitive generation during the simulation processes can be computational expensive due to the substantial computational overhead that arises at the substructure level. In this regard, an efficient finite element model parametrization scheme is considered. When the division of the structural model is guided by such a parametrization scheme, the generation of a small number of reduced order models is sufficient to run the large number of dynamic re-analyses. Thus, a drastic reduction in computational effort is achieved without compromising the accuracy of the results. The capabilities of the developed procedures are demonstrated in a number of simulation-based problems involving uncertainty.
Sub-structure Coupling for Dynamic Analysis
Title | Sub-structure Coupling for Dynamic Analysis PDF eBook |
Author | Hector Jensen |
Publisher | |
Pages | |
Release | 2019 |
Genre | Electronic books |
ISBN | 9783030128203 |
This book combines a model reduction technique with an efficient parametrization scheme for the purpose of solving a class of complex and computationally expensive simulation-based problems involving finite element models. These problems, which have a wide range of important applications in several engineering fields, include reliability analysis, structural dynamic simulation, sensitivity analysis, reliability-based design optimization, Bayesian model validation, uncertainty quantification and propagation, etc. The solution of this type of problems requires a large number of dynamic re-analyses. To cope with this difficulty, a model reduction technique known as substructure coupling for dynamic analysis is considered. While the use of reduced order models alleviates part of the computational effort, their repetitive generation during the simulation processes can be computational expensive due to the substantial computational overhead that arises at the substructure level. In this regard, an efficient finite element model parametrization scheme is considered. When the division of the structural model is guided by such a parametrization scheme, the generation of a small number of reduced order models is sufficient to run the large number of dynamic re-analyses. Thus, a drastic reduction in computational effort is achieved without compromising the accuracy of the results. The capabilities of the developed procedures are demonstrated in a number of simulation-based problems involving uncertainty.
Substructure Coupling for Dynamic Analysis and Testing
Title | Substructure Coupling for Dynamic Analysis and Testing PDF eBook |
Author | Roy R. Craig |
Publisher | |
Pages | 100 |
Release | 1977 |
Genre | Structural dynamics |
ISBN |
Substructure coupling for dynamic analysis
Title | Substructure coupling for dynamic analysis PDF eBook |
Author | Ching-Jone Chang |
Publisher | |
Pages | 88 |
Release | 1975 |
Genre | Coupled mode theory |
ISBN |
Dynamics of Coupled Structures, Volume 1
Title | Dynamics of Coupled Structures, Volume 1 PDF eBook |
Author | Matt Allen |
Publisher | Springer Science & Business |
Pages | 466 |
Release | 2014-04-16 |
Genre | Technology & Engineering |
ISBN | 3319045016 |
This first 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
A General Procedure for Substructure Coupling in Dynamic Analysis
Title | A General Procedure for Substructure Coupling in Dynamic Analysis PDF eBook |
Author | Ching-Jone Chang |
Publisher | |
Pages | 258 |
Release | 1977 |
Genre | Structural analysis (Engineering) |
ISBN |
Machining Dynamics
Title | Machining Dynamics PDF eBook |
Author | Tony L. Schmitz |
Publisher | Springer |
Pages | 389 |
Release | 2018-10-30 |
Genre | Technology & Engineering |
ISBN | 3319937073 |
This book trains engineers and students in the practical application of machining dynamics, with a particular focus on milling. The book walks readers through the steps required to improve machining productivity through chatter avoidance and reduced surface location error, and covers in detail topics such as modal analysis (including experimental methods) to obtain the tool point frequency response function, descriptions of turning and milling, force modeling, time domain simulation, stability lobe diagram algorithms, surface location error calculation for milling, beam theory, and more. This new edition includes updates throughout the entire text, new exercises and examples, and a new chapter on machining tribology. It is a valuable resource for practicing manufacturing engineers and graduate students interested in learning how to improve machining productivity through consideration of the process dynamics.