Guidelines for Probabilistic Performance-Based Seismic Design and Assessment of Slope Engineering
Edition:
enCouverture rigide978981199182017 mars 2023138 pages
Résumé
This book provides a new design and evaluation framework based on slope Stochastic Dynamics theory to probabilistic seismic performance for slope engineering.
This book provides a new design and evaluation framework based on slope Stochastic Dynamics theory to probabilistic seismic performance for slope engineering. For the seismic dynamic stability safety of slope, it shifts from deterministic seismic dynamic analysis to quantitative analysis based on nonlinear stochastic dynamics, that is, from qualitative to the description of stochasticity of earthquake excitation that meet the needs in related design specification and establish a performance standard. In the nonlinear dynamic time history analysis of slope subjected to seismic ground motion, the term “randomness” is used to express the uncertainty in the intensity and frequency of earthquake excitation for slope engineering dynamic seismic performance. It mainly includes seismic design fortification standard, corresponding ground motion excitation, performance index threshold, and slope deterministic nonlinear seismic dynamic response. Even more than that, the seismic dynamic large deformation approaches of the whole process and comprehensive analysis for flow analysis after slope instability failure. Eventually, the probabilistic seismic dynamic performance of the slope engineering will be characterized by nonlinear dynamic reliability.
This book provides a new design and evaluation framework based on slope Stochastic Dynamics theory to probabilistic seismic performance for slope engineering. For the seismic dynamic stability safety of slope, it shifts from deterministic seismic dynamic analysis to quantitative analysis based on nonlinear stochastic dynamics, that is, from qualitative to the description of stochasticity of earthquake excitation that meet the needs in related design specification and establish a performance standard. In the nonlinear dynamic time history analysis of slope subjected to seismic ground motion, the term “randomness” is used to express the uncertainty in the intensity and frequency of earthquake excitation for slope engineering dynamic seismic performance. It mainly includes seismic design fortification standard, corresponding ground motion excitation, performance index threshold, and slope deterministic nonlinear seismic dynamic response. Even more than that, the seismic dynamic large deformation approaches of the whole process and comprehensive analysis for flow analysis after slope instability failure. Eventually, the probabilistic seismic dynamic performance of the slope engineering will be characterized by nonlinear dynamic reliability.
Spécifications produit
Contenu
- Langue
- en
- Version
- Couverture rigide
- Date de sortie initiale
- 17 mars 2023
- Nombre de pages
- 138
- Illustrations
- Avec illustrations
Personnes impliquées
- Auteur principal
- Deuxième auteur
- Editeur principal
Informations sur le fabricant
- Nom du fabricant
- Springer Nature Customer Service Center GmbH
- Adresse du fabricant
- Europaplatz 3,69115 Heidelberg, Germany - 69115 - Heidelberg - DE
- Adresse e-mail du fabricant ou formulaire de contact en ligne
- ProductSafety@springernature.com
- Informations sur le fabricant
- Les informations du fabricant ne sont actuellement pas disponibles
Autres spécifications
- Hauteur de l'emballage
- 235 mm
- Largeur d'emballage
- 155 mm
- Largeur du produit
- 155 mm
- Livre d‘étude
- Non
- Longueur d'emballage
- 235 mm
- Longueur du produit
- 235 mm
- Poids de l'emballage
- 428 g
- Édition
- 1st ed. 2023
EAN
- EAN
- 9789811991820
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