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Safety and reliability are important for the whole expected service
duration of an engineering structure. Therefore, prognostical
solutions for different building types are needed and uncertainties
have to be handled. Life-cycle strategies to control future
structural degradations by concepts of appropriate design have to
be developed, in case including means of inspection, maintenance,
and repair. Aspects of costs and sustainability also matter. The
Cooperative Research Center for Lifetime-Oriented Design Concepts
(SFB 398) at Ruhr University in Bochum combines the wide range of
scientific topics between structural engineering, structural and
soil mechanics and material sciences regarding structural lifetime
management in this present extraordinary monolithic format. The
characterization and modeling of lifetime-related external actions
of multiple origin are presented in this book as well as the
physical description, the modeling and the validation of material
degradation. Adaptive numerical methods and simulation techniques
are provided for the lifetime-oriented design concepts to forecast
material and structural degradation. Stochastic aspects,
mathematical optimization methods and interactions between various
influences are included. Thus, a solid basis is provided for future
practical use and also for standardization of structural design
with respect to lifetime-prediction.
Safety and reliability are important for the whole expected service
duration of an engineering structure. Therefore, prognostical
solutions for different building types are needed and uncertainties
have to be handled. Life-cycle strategies to control future
structural degradations by concepts of appropriate design have to
be developed, in case including means of inspection, maintenance,
and repair. Aspects of costs and sustainability also matter. The
Cooperative Research Center for Lifetime-Oriented Design Concepts
(SFB 398) at Ruhr University in Bochum combines the wide range of
scientific topics between structural engineering, structural and
soil mechanics and material sciences regarding structural lifetime
management in this present extraordinary monolithic format. The
characterization and modeling of lifetime-related external actions
of multiple origin are presented in this book as well as the
physical description, the modeling and the validation of material
degradation. Adaptive numerical methods and simulation techniques
are provided for the lifetime-oriented design concepts to forecast
material and structural degradation. Stochastic aspects,
mathematical optimization methods and interactions between various
influences are included. Thus, a solid basis is provided for future
practical use and also for standardization of structural design
with respect to lifetime-prediction.
Die Theorie des Spannbetontragers wird in diesem Lehrbuch auf der
Grundlage der massgebenden Gesetze der Technischen Mechanik
mathematisch streng dargestellt, um das Verstandnis fur die z.T.
verwickelten Zusammenhange und die erforderlichen rechnerischen
Nachweise, die dem Spannbeton eigen sind, zu vermitteln. Der Inhalt
erhebt Anspruch auf verhaltnismassig allgemeine Gultigkeit und
nimmt daher auf keine bestimmten Regelwerke oder Bestimmungen
Bezug. Zahlenmassig durchgerechnete Beispiele sind nicht
aufgenommen worden, da in der Praxis elektronische Rechenprogramme
Anwendung finden. Um den Rahmen des Buches nicht zu sprengen, wurde
auf Beschreibungen von Spannverfahren und konstruktive Regeln
verzichtet. Begriffe und Formelzeichen orientieren sich an den
eingefuhrten Bezeichnungen."
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