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Earthquake Disaster Simulation of Civil Infrastructures (2nd Ed., 2nd ed. 2021) From Tall Buildings to Urban Areas

Langue : Anglais

Auteurs :

Couverture de l’ouvrage Earthquake Disaster Simulation of Civil Infrastructures
The first edition of this monograph, presenting accurate and efficient simulations of seismic damage to buildings and cities, has received significant attention from the research community. To keep abreast of the rapid development in recent years, our latest breakthrough achievements have been added to this new edition, including novel resilient structural components, secondary disaster simulations, emergency responses and resilient recovery of communities after earthquake. This edition comprehensively covers a range of numerical modeling approaches, higher performance computation methods, and high fidelity visualization techniques for earthquake disaster simulation of tall buildings and urban areas. It also demonstrates successful engineering applications of the proposed methodologies to typical landmark projects (e.g., Shanghai Tower and CITIC Tower, two of the world's tallest buildings; Beijing CBD and San Francisco Bay Area). Reported in this edition are a collection of about 60 high impact journal publications which have already received high citations.


Introduction.- High fidelity Computational Models for Earthquake Disaster Simulation of Tall Buildings.-Earthquake Disaster Simulation of Typical Supertall Buildings.- Comparison of Seismic Design and Resilience of Tall Buildings based on Chinese and US Design Codes.- Simplified Models for Earthquake Disaster Simulation of Supertall Buildings.- Seismic Resilient Outriggers and Multi-hazard Resilient Frames.- Building Models for City-scale Nonlinear Time-history Analyses.- Regional Seismic Loss Estimation of Buildings.- Visualization and High-performance Computing for City-scale Nonlinear Time-history Analyses.- Fire Following Earthquake and Falling Debris Hazards.- Emergency Response and Post-earthquake Recovery using City-scale Nonlinear Time-history Analysis.- Earthquake Disaster Simulation of Typical Urban Areas.- Conclusions.

Prof. Xinzheng Lu obtained his BS and PhD degrees from Tsinghua University of China. He started his academic career in 2005 as an Assistant Professor at the same university. He was subsequently promoted to Associate Professor in December 2007, Head of the Institute of Disaster Prevention and Mitigation in 2010 and Full Professor in December 2012. His major research interests cover disaster prevention and mitigation of civil engineering structures. He participated in the emergency earthquake reconnaissance and structural retrofitting after Wenchuan (2008), Yushu (2010), Lushan (2013), Ludian (2014) and Nepal earthquakes (2015).

Prof. Lu has published more than 200 papers in refereed journals and 13 books. His publications have received more than 1600 citations in Web of Science. Nine of his publications were listed by InCites database as “Top 3% Most Cited Papers” of the WOS subject areas. His publications have been widely cited by many scholars with a strong international reputation, including more than 40 fellows/members of NAS/NAE of USA, RAE of UK, etc. A book review on Engineering Structures regards his book as “the latest and most advanced methods for the study of tall buildings and urban areas during earth tremors.” He has been listed as the “Chinese most cited researchers from 2014-2019” 

Prof. Lu has received several important awards including: the Distinguished Professor of Chang Jiang Scholars Program of Ministry of Education of China (2018), the Leading Researcher of “Ten Thousand Talent Program” of China (2016), the Young Scholarship of Chang Jiang Scholars Program of Ministry of Education of China (2015), the Early-Mid-Career Research Leader Program of the Promotion Plan of Innovative Talent of Ministry of Science and Technology of China (2013), the National Natural Science Award (Second Prize, 2013), the Excellent Young Scientist Fund of National Natural Science Foundation of China (2012) and

Provides an explicit pragmatic instruction for seismic response simulations of supertall buildings, in particular the collapse simulation of two of the tallest buildings in the world

Proposes a novel high-fidelity simulation method for seismic damage of urban areas, which offers a cutting-edge seismic damage simulation tool for urban cities

Introduces successfully applied methodologies and computational models, covering from design optimization of tall buildings to the emergence responses of populous cities

Date de parution :

Ouvrage de 934 p.

15.5x23.5 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

232,09 €

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Date de parution :

Ouvrage de 934 p.

15.5x23.5 cm

Disponible chez l'éditeur (délai d'approvisionnement : 15 jours).

232,09 €

Ajouter au panier