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4 produkter
4 produkter
ECCOMAS Multidisciplinary Jubilee Symposium
New Computational Challenges in Materials, Structures, and Fluids
Inbunden, Engelska, 2009
1 588 kr
Skickas inom 10-15 vardagar
This book contains 23 papers presented at the ECCOMAS Multidisciplinary Jubilee Symposium - New Computational Challenges in Materials, Structures, and Fluids (EMJS08), in Vienna, February 18–20, 2008. The main intention of EMJS08 was to react adequately to the increasing need for interdisciplinary research activities allowing ef?cient solution of complex problems in engineering and in the applied sciences. The 15th anniversary of ECCOMAS (European Community on Computational Methods in Applied Sciences) provided a suitable frame for taking the afo- mentioned situation into account by inviting distinguished colleagues from d- ferent areas of engineering and the applied sciences, encouraging them to choose multidisciplinary topics for their lectures. The main themes of EMJS08 have a long tradition in engineering and in the applied sciences: materials, structures, and ?uids. The solution of scienti?c pr- lems involving ?uids together with solids and structures, not to forget the materials the structures are made of, is of paramount importance in a technical world of rapidly increasing sophistication, referred to as the Leonardo World by the eminent German philosopher Ju¨rgen Mittelstraß. More recently, the main themes of EMJS08 have gained considerable mom- tum, owing to signi?cant progress in nanotechnology. It enables resolution of a multitude of materials into their micro- and nanostructures. Covering aspects such as • Physical and chemical characterization • Multiscale modeling concepts, continuum micromechanics, and computational homogenization, as well as • Applications in various engineering ?elds the individual contributions to this book ?ow along different tracks of ?uids, materials, and structures.
699 kr
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Die Festigkeitslehre ist zu einem festen Bestandteil der technischen Mechanik geworden und unverzichtbar in der Baustatik. Denn als ein Teil der Kontinuumsmechanik beschäftigt sie sich überwiegend mit der Ermittlung von Spannungen und Verzerrungen vor allem in technischen Konstruktionen. Herbert Mang und Günter Hofstetter präsentieren mit diesem Lehrbuch eine umfassende, verständliche und anschauliche Einführung in die Festigkeitslehre und nutzen zahlreiche bis ins Detail ausgearbeitete Beispiele, um die Leistungsfähigkeit der analytischen, numerischen und experimentellen Methoden dieser Disziplin zu illustrieren. Ausgehend von den wesentlichen mathematischen Grundlagen behandeln sie die Grundzüge der Elastizitätstheorie, darunter auch die Anwendung des Hook’schen Gesetzes, während ihnen die Elastizitätstheorie dazu dient, das Verhalten von elastischen Körpern mathematisch zu beschreiben. Denn um Spannungen und Verzerrungen ermitteln zu können, muss man diese Zusammenhänge unbedingt verstehen und berechnen können. In den folgenden Kapiteln erläutern die Autoren die Prinzipien der virtuellen Arbeiten, verschiedene Energieprinzipien, die lineare Stabtheorie, aber auch Stabilitätsprobleme, Anstrengungshypothesen, anelastisches Werkstoffverhalten und elastoplastisches Materialverhalten bei Stäben. Außerdem gehen sie ausführlich auf die Grundlagen der Plastizitätstheorie einschließlich der Traglastsätze ein, veranschaulichen Näherungslösungen wie die Methode der finiten Elemente und stellen verschiedene experimentelle Methoden der Festigkeitslehre vor. Neu an der 5. Auflage ist das mit Grundlagen der Bruchmechnik betitelte Kapitel.Das Lehrbuch richtet sich vor allem an Studierende des Bauingenieurwesens und des Maschinenbaus, aber auch an praktisch tätige Ingenieure.
6 241 kr
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Following the great progress made in computing technology, both in computer and programming technology, computation has become one of the most powerful tools for researchers and practicing engineers. It has led to tremendous achievements in computer-based structural engineering and there is evidence that current devel- ments will even accelerate in the near future. To acknowledge this trend, Tongji University, Vienna University of Technology, and Chinese Academy of Engine- ing, co-organized the International Symposium on Computational Structural En- neering 2009 in Shanghai (CSE’09). CSE’09 aimed at providing a forum for presentation and discussion of sta- of-the-art development in scientific computing applied to engineering sciences. Emphasis was given to basic methodologies, scientific development and engine- ing applications. Therefore, it became a central academic activity of the Inter- tional Association for Computational Mechanics (IACM), the European Com- nity on Computational Methods in Applied Sciences (ECCOMAS), The Chinese Society of Theoretical and Applied Mechanic, the China Civil Engineering So- ety, and the Architectural Society of China. A total of 10 invited papers, and around 140 contributed papers were p- sented in the proceedings of the symposium. Contributors of papers came from 20 countries around the world and covered a wide spectrum related to the compu- tional structural engineering.
ECCOMAS Multidisciplinary Jubilee Symposium
New Computational Challenges in Materials, Structures, and Fluids
Häftad, Engelska, 2010
1 593 kr
Skickas inom 10-15 vardagar
This book contains 23 papers presented at the ECCOMAS Multidisciplinary Jubilee Symposium - New Computational Challenges in Materials, Structures, and Fluids (EMJS08), in Vienna, February 18–20, 2008. The main intention of EMJS08 was to react adequately to the increasing need for interdisciplinary research activities allowing ef?cient solution of complex problems in engineering and in the applied sciences. The 15th anniversary of ECCOMAS (European Community on Computational Methods in Applied Sciences) provided a suitable frame for taking the afo- mentioned situation into account by inviting distinguished colleagues from d- ferent areas of engineering and the applied sciences, encouraging them to choose multidisciplinary topics for their lectures. The main themes of EMJS08 have a long tradition in engineering and in the applied sciences: materials, structures, and ?uids. The solution of scienti?c pr- lems involving ?uids together with solids and structures, not to forget the materials the structures are made of, is of paramount importance in a technical world of rapidly increasing sophistication, referred to as the Leonardo World by the eminent German philosopher Ju¨rgen Mittelstraß. More recently, the main themes of EMJS08 have gained considerable mom- tum, owing to signi?cant progress in nanotechnology. It enables resolution of a multitude of materials into their micro- and nanostructures. Covering aspects such as • Physical and chemical characterization • Multiscale modeling concepts, continuum micromechanics, and computational homogenization, as well as • Applications in various engineering ?elds the individual contributions to this book ?ow along different tracks of ?uids, materials, and structures.