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Geohazards = analysis, modelling and...
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Geohazards = analysis, modelling and forecasting /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Geohazards/ edited by Sandeep ... [et al.].
其他題名:
analysis, modelling and forecasting /
其他作者:
Sandeep.
出版者:
Singapore :Springer Nature Singapore : : 2023.,
面頁冊數:
xiv, 193 p. :ill. (some col.), digital ;24 cm.
內容註:
Role of active tectonics in the estimation of seismic hazard of an area: A case study of western India -- Stress Scenario In The North-West Himalaya: What We Learnt From Post-Seismic Stress Changes -- The crust and upper mantle structure beneath the Bangladesh and its effects on seismic hazard -- Seismological data quality controls - a synthesis -- Use of Geophysical techniques in Seismic Hazard Assessment and Microzonation -- Earthquake response and its implications towards the structural design codes for Himalayan and adjoining regions of India -- Liquefaction Potential Index (LPI): A Parameter to Assess Liquefaction Hazard -- Earthquake Precursory Studies Using Radon Time Series Data in Taiwan: An Overview -- Spatial prediction of earthquake-induced landslide susceptible zones - A case study from Indian Himalaya -- Tsunamis in the past and recent years over Indian coasts: A review -- Instrumentation of India's First Regional Earthquake Early Warning System and Site Characterization of its Stations -- Overview of Artificial Intelligence (AI) and Machine Learning (ML) in Seismology.
Contained By:
Springer Nature eBook
標題:
Earthquake hazard analysis. -
電子資源:
https://doi.org/10.1007/978-981-99-3955-8
ISBN:
9789819939558
Geohazards = analysis, modelling and forecasting /
Geohazards
analysis, modelling and forecasting /[electronic resource] :edited by Sandeep ... [et al.]. - Singapore :Springer Nature Singapore :2023. - xiv, 193 p. :ill. (some col.), digital ;24 cm. - Advances in natural and technological hazards research,v. 532213-6959 ;. - Advances in natural and technological hazards research ;v. 53..
Role of active tectonics in the estimation of seismic hazard of an area: A case study of western India -- Stress Scenario In The North-West Himalaya: What We Learnt From Post-Seismic Stress Changes -- The crust and upper mantle structure beneath the Bangladesh and its effects on seismic hazard -- Seismological data quality controls - a synthesis -- Use of Geophysical techniques in Seismic Hazard Assessment and Microzonation -- Earthquake response and its implications towards the structural design codes for Himalayan and adjoining regions of India -- Liquefaction Potential Index (LPI): A Parameter to Assess Liquefaction Hazard -- Earthquake Precursory Studies Using Radon Time Series Data in Taiwan: An Overview -- Spatial prediction of earthquake-induced landslide susceptible zones - A case study from Indian Himalaya -- Tsunamis in the past and recent years over Indian coasts: A review -- Instrumentation of India's First Regional Earthquake Early Warning System and Site Characterization of its Stations -- Overview of Artificial Intelligence (AI) and Machine Learning (ML) in Seismology.
This book presents a comprehensive analysis of diverse aspects of geohazards. The growing vulnerability and exposure to failures in risk reduction and policy-making increases the severity of geohazard impacts by many folds. Therefore, detailed geohazard analysis, modelling and forecasting are needed to reduce the impacts of extreme events. An interdisciplinary approach to hazard mitigation provides an advanced tool for risk reduction. The book thus summarizes recent modelling and analysis techniques for hazard assessment and risk mitigation. Topics discussed in the book are hazard and risk associated with earthquakes, vulnerability assessment for landslides and avalanches, the assessment of tsunami risk in coastal regions, the implementation of early warning systems to prevent catastrophic consequences, climate change risk modelling and risk communication. The convergent approach with the aspects of natural, engineering, and social sciences attracts a vast audience working to advance disaster science. This book also significantly facilitates the acquisition of policy-relevant knowledge for risk reduction, which is beneficial to the general public.
ISBN: 9789819939558
Standard No.: 10.1007/978-981-99-3955-8doiSubjects--Topical Terms:
544027
Earthquake hazard analysis.
LC Class. No.: QE539.2.S34
Dewey Class. No.: 363.349563
Geohazards = analysis, modelling and forecasting /
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Role of active tectonics in the estimation of seismic hazard of an area: A case study of western India -- Stress Scenario In The North-West Himalaya: What We Learnt From Post-Seismic Stress Changes -- The crust and upper mantle structure beneath the Bangladesh and its effects on seismic hazard -- Seismological data quality controls - a synthesis -- Use of Geophysical techniques in Seismic Hazard Assessment and Microzonation -- Earthquake response and its implications towards the structural design codes for Himalayan and adjoining regions of India -- Liquefaction Potential Index (LPI): A Parameter to Assess Liquefaction Hazard -- Earthquake Precursory Studies Using Radon Time Series Data in Taiwan: An Overview -- Spatial prediction of earthquake-induced landslide susceptible zones - A case study from Indian Himalaya -- Tsunamis in the past and recent years over Indian coasts: A review -- Instrumentation of India's First Regional Earthquake Early Warning System and Site Characterization of its Stations -- Overview of Artificial Intelligence (AI) and Machine Learning (ML) in Seismology.
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This book presents a comprehensive analysis of diverse aspects of geohazards. The growing vulnerability and exposure to failures in risk reduction and policy-making increases the severity of geohazard impacts by many folds. Therefore, detailed geohazard analysis, modelling and forecasting are needed to reduce the impacts of extreme events. An interdisciplinary approach to hazard mitigation provides an advanced tool for risk reduction. The book thus summarizes recent modelling and analysis techniques for hazard assessment and risk mitigation. Topics discussed in the book are hazard and risk associated with earthquakes, vulnerability assessment for landslides and avalanches, the assessment of tsunami risk in coastal regions, the implementation of early warning systems to prevent catastrophic consequences, climate change risk modelling and risk communication. The convergent approach with the aspects of natural, engineering, and social sciences attracts a vast audience working to advance disaster science. This book also significantly facilitates the acquisition of policy-relevant knowledge for risk reduction, which is beneficial to the general public.
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