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Rigid Finite Element Method in Analysis of Dynamics of Offshore Structures (Hardcover, 2013 ed.): Edmund Wittbrodt, Marek... Rigid Finite Element Method in Analysis of Dynamics of Offshore Structures (Hardcover, 2013 ed.)
Edmund Wittbrodt, Marek Szczotka, Andrzej Maczynski, Stanislaw Wojciech
R2,672 Discovery Miles 26 720 Ships in 18 - 22 working days

This book describes new methods developed for modelling dynamics of machines commonly used in the offshore industry. These methods are based both on the rigid finite element method, used for the description of link deformations, and on homogeneous transformations and joint coordinates, which is applied to the modelling of multibody system dynamics. In this monograph, the bases of the rigid finite element method and homogeneous transformations are introduced. Selected models for modelling dynamics of offshore devices are then verified both by using commercial software, based on the finite element method, as well as by using additional methods. Examples of mathematical models of offshore machines, such as a gantry crane for Blowout-Preventer (BOP) valve block transportation, a pedestal crane with shock absorber, and pipe laying machinery are presented. Selected problems of control in offshore machinery as well as dynamic optimization in device control are also discussed. Additionally, numerical simulations of pipe-laying operations taking active reel drive into account are shown.

Dynamics of Flexible Multibody Systems - Rigid Finite Element Method (Hardcover, 2006 ed.): Edmund Wittbrodt, Iwona... Dynamics of Flexible Multibody Systems - Rigid Finite Element Method (Hardcover, 2006 ed.)
Edmund Wittbrodt, Iwona Adamiec-Wojcik, Stanislaw Wojciech
R1,420 Discovery Miles 14 200 Ships in 18 - 22 working days

A new approach is presented in this book for modelling multi-body systems, which constitutes a substantial enhancement of the Rigid Finite Element method. The new approach is based on homogeneous transformations and joint coordinates. Apart from its simple physical interpretation and easy computer implementation, the method is also valuable for educational purposes since it impressively illustrates the impact of mechanical features on the mathematical model.

Rigid Finite Element Method in Analysis of Dynamics of Offshore Structures (Paperback, 2013 ed.): Edmund Wittbrodt, Marek... Rigid Finite Element Method in Analysis of Dynamics of Offshore Structures (Paperback, 2013 ed.)
Edmund Wittbrodt, Marek Szczotka, Andrzej Maczynski, Stanislaw Wojciech
R3,292 Discovery Miles 32 920 Ships in 18 - 22 working days

This book describes new methods developed for modelling dynamics of machines commonly used in the offshore industry. These methods are based both on the rigid finite element method, used for the description of link deformations, and on homogeneous transformations and joint coordinates, which is applied to the modelling of multibody system dynamics. In this monograph, the bases of the rigid finite element method and homogeneous transformations are introduced. Selected models for modelling dynamics of offshore devices are then verified both by using commercial software, based on the finite element method, as well as by using additional methods. Examples of mathematical models of offshore machines, such as a gantry crane for Blowout-Preventer (BOP) valve block transportation, a pedestal crane with shock absorber, and pipe laying machinery are presented. Selected problems of control in offshore machinery as well as dynamic optimization in device control are also discussed. Additionally, numerical simulations of pipe-laying operations taking active reel drive into account are shown.

Dynamics of Flexible Multibody Systems - Rigid Finite Element Method (Paperback, Softcover reprint of hardcover 1st ed. 2006):... Dynamics of Flexible Multibody Systems - Rigid Finite Element Method (Paperback, Softcover reprint of hardcover 1st ed. 2006)
Edmund Wittbrodt, Iwona Adamiec-Wojcik, Stanislaw Wojciech
R1,408 Discovery Miles 14 080 Ships in 18 - 22 working days

A new approach is presented in this book for modelling multi-body systems, which constitutes a substantial enhancement of the Rigid Finite Element method. The new approach is based on homogeneous transformations and joint coordinates. Apart from its simple physical interpretation and easy computer implementation, the method is also valuable for educational purposes since it impressively illustrates the impact of mechanical features on the mathematical model.

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