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Integral Transform Techniques for Green's Function (Paperback, Softcover reprint of the original 2nd ed. 2015): Kazumi... Integral Transform Techniques for Green's Function (Paperback, Softcover reprint of the original 2nd ed. 2015)
Kazumi Watanabe
R3,768 Discovery Miles 37 680 Ships in 10 - 15 working days

This book describes mathematical techniques for integral transforms in a detailed but concise manner. The techniques are subsequently applied to the standard partial differential equations, such as the Laplace equation, the wave equation and elasticity equations. Green’s functions for beams, plates and acoustic media are also shown, along with their mathematical derivations. The Cagniard-de Hoop method for double inversion is described in detail and 2D and 3D elastodynamic problems are treated in full. This new edition explains in detail how to introduce the branch cut for the multi-valued square root function. Further, an exact closed form Green’s function for torsional waves is presented, as well as an application technique of the complex integral, which includes the square root function and an application technique of the complex integral.

Integral Transform Techniques for Green's Function (Hardcover, 2nd ed. 2015): Kazumi Watanabe Integral Transform Techniques for Green's Function (Hardcover, 2nd ed. 2015)
Kazumi Watanabe
R4,016 Discovery Miles 40 160 Ships in 10 - 15 working days

This book describes mathematical techniques for integral transforms in a detailed but concise manner. The techniques are subsequently applied to the standard partial differential equations, such as the Laplace equation, the wave equation and elasticity equations. Green's functions for beams, plates and acoustic media are also shown, along with their mathematical derivations. The Cagniard-de Hoop method for double inversion is described in detail and 2D and 3D elastodynamic problems are treated in full. This new edition explains in detail how to introduce the branch cut for the multi-valued square root function. Further, an exact closed form Green's function for torsional waves is presented, as well as an application technique of the complex integral, which includes the square root function and an application technique of the complex integral.

Dynamics of Advanced Materials and Smart Structures (Paperback, Softcover reprint of hardcover 1st ed. 2003): Kazumi Watanabe,... Dynamics of Advanced Materials and Smart Structures (Paperback, Softcover reprint of hardcover 1st ed. 2003)
Kazumi Watanabe, Franz Ziegler
R5,823 Discovery Miles 58 230 Ships in 10 - 15 working days

Two key words for mechanical engineering in the future are Micro and Intelligence. It is weIl known that the leadership in the intelligence technology is a marter of vital importance for the future status of industrial society, and thus national research projects for intelligent materials, structures and machines have started not only in advanced countries, but also in developing countries. Materials and structures which have self-sensing, diagnosis and actuating systems, are called intelligent or smart, and are of growing research interest in the world. In this situation, the IUT AM symposium on Dynamics 0/ Advanced Materials and Smart Structures was a timely one. Smart materials and structures are those equipped with sensors and actuators to achieve their designed performance in achanging environment. They have complex structural properties and mechanical responses. Many engineering problems, such as interface and edge phenomena, mechanical and electro-magnetic interaction/coupling and sensing, actuating and control techniques, arise in the development ofintelligent structures. Due to the multi-disciplinary nature ofthese problems, all ofthe classical sciences and technologies, such as applied mathematics, material science, solid and fluid mechanics, control techniques and others must be assembled and used to solve them. IUTAM weIl understands the importance ofthis emerging technology. An IUTAM symposium on Smart Structures and Structronic Systems (Chaired by U.

Mechanics and Model-Based Control of Smart Materials and Structures (Hardcover, 2010 ed.): Hans Irschik, Michael Krommer,... Mechanics and Model-Based Control of Smart Materials and Structures (Hardcover, 2010 ed.)
Hans Irschik, Michael Krommer, Kazumi Watanabe, Toshio Furukawa
R4,518 Discovery Miles 45 180 Ships in 10 - 15 working days

Mechanics and model-based control are both rapidly expanding scientific fields and fundamental disciplines of mechatronics, sharing demanding mathematical and system-theoretic formulations and methods. The papers in this volume deal with smart materials, which allow the design and implementation of new types of actuator/sensor fields and networks. Main topics treated are fundamental studies on laminated, composite and functionally graded materials, thermal and piezoelectric actuation, active and passive damping, as well as vibrations and waves in smart structures. The book is based on the 1st Japanese-Austrian Workshop which took place in Linz in Fall 2008.

Dynamics of Advanced Materials and Smart Structures (Hardcover, 2003 ed.): Kazumi Watanabe, Franz Ziegler Dynamics of Advanced Materials and Smart Structures (Hardcover, 2003 ed.)
Kazumi Watanabe, Franz Ziegler
R6,075 Discovery Miles 60 750 Ships in 10 - 15 working days

Two key words for mechanical engineering in the future are Micro and Intelligence. It is weIl known that the leadership in the intelligence technology is a marter of vital importance for the future status of industrial society, and thus national research projects for intelligent materials, structures and machines have started not only in advanced countries, but also in developing countries. Materials and structures which have self-sensing, diagnosis and actuating systems, are called intelligent or smart, and are of growing research interest in the world. In this situation, the IUT AM symposium on Dynamics 0/ Advanced Materials and Smart Structures was a timely one. Smart materials and structures are those equipped with sensors and actuators to achieve their designed performance in achanging environment. They have complex structural properties and mechanical responses. Many engineering problems, such as interface and edge phenomena, mechanical and electro-magnetic interaction/coupling and sensing, actuating and control techniques, arise in the development ofintelligent structures. Due to the multi-disciplinary nature ofthese problems, all ofthe classical sciences and technologies, such as applied mathematics, material science, solid and fluid mechanics, control techniques and others must be assembled and used to solve them. IUTAM weIl understands the importance ofthis emerging technology. An IUTAM symposium on Smart Structures and Structronic Systems (Chaired by U.

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