Timber construction has been one of the most innovative areas of the building industry for several years. The speed with which new products are introduced into practical application is almost breathtaking compared to the other construction materials in the building industry. As a result, timber construction is continuously increasing its market share in commercial buildings and hall structures, and even in multi-storey construction for residential and office buildings.
This book provides essential knowledge and skills required for the design, detailing, and construction of timber structures for typical building structures. Special emphasis is placed on the specific features of timber and wood-based materials compared to other construction materials. This concerns the numerous advantages, as e.g. the comparatively low weight, the good workability of the high-performance material and the large variety of assembling technologies, but also the challenges resulting from the material anisotropy and from the susceptibility to natural pests.
In each chapter the essential phenomena are explained first and then brought into connection with code regulations. This aims to support the basic understanding of the interrelations and dependencies in timber engineering, which is the fundamental basis of creative engineering.
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Werner Seim is a professor for Timber Engineering and Building Preservation at the University of Kassel, Germany, and also an engineer with more than 35 years of experience in design and assessment of timber structures. He holds a Civil Engineering Degree from the University of Stuttgart, received his PhD in 1994 at the KIT (Karlsruhe Institute for Technology) and conducted postdoctoral studies 1998 at the UCSD (University of California, San Diego). His research is focussed on bracing systems for high-rise buildings, timber-concrete-composites and assessment and re-use of structures. He is member of several national and international scientific committees. He was invited as a Visiting Professor to UBC Vancouver, EPF Lausanne and FCBA Bordeaux. His commitment to teaching was rewarded in 2020 with the Hessian State Prize. As an engineer he received in 2006 a timber construction prize awarded by the state of Baden-Württemberg.
Werner Seim ist Professor für Holzbau und Bauwerkserhaltung an der Universität Kassel, Deutschland, und Ingenieur mit mehr als 35 Jahren Erfahrung im Bereich des Holzbaus und der Bauwerkserhaltung. Er studierte Bauingenieurwesen an der Universität Stuttgart, promovierte 1994 am KIT (Karlsruher Institut für Technologie) und absolvierte 1998 ein Postdoc-Studium an der UCSD (University of California, San Diego). Seine Forschungsschwerpunkte sind Aussteifungssysteme für Hochhäuser, der Holz-Beton-Verbund sowie die Bewertung und Wiederverwendung von Tragelementen. Er ist Mitglied in mehreren nationalen und internationalen wissenschaftlichen Ausschüssen. Er wurde als Gastprofessor an die UBC Vancouver, die EPF Lausanne und das FCBA Bordeaux eingeladen. Sein Engagement in der Lehre wurde 2020 vom Land Hessen mit einem Preis für exzellente Lehre gewürdigt. Als Ingenieur erhielt er im Jahr 2006 den Holzbaupreis des Landes Baden-Württemberg.
Timber construction has been one of the most innovative areas of the building industry for several years. The speed with which new products are introduced into practical application is almost breathtaking compared to the other construction materials in the building industry. As a result, timber construction is continuously increasing its market share in commercial buildings and hall structures, and even in multi-storey construction for residential and office buildings.
This book provides essential knowledge and skills required for the design, detailing, and construction of timber structures. Special emphasis is placed on the specific features of timber and wood-based materials compared to other construction materials. This concerns the numerous advantages, as e.g. the comparatively low weight, the good workability of the high-performance material and the large variety of assembling technologies, but also the challenges resulting from the material anisotropy and from the susceptibility to natural pests.
In each chapter the essential phenomena are explained first and then brought into connection with code regulations. This aims to support the basic understanding of the interrelations and dependencies in timber engineering, which is the fundamental basis of creative engineering.
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