Probability assessment of land use suitability with ground surface ruptures induced by strong earthquakes | |
Ma Donghui ; Li Gang ; Qian Jiaru | |
2010-05-11 ; 2010-05-11 | |
关键词 | Practical Theoretical or Mathematical/ civil engineering earthquakes hazardous areas land use planning probability/ probability assessment land use suitability strong earthquakes seismic ground surface ruptures faultage ground area urban land use planning China third-level hazardous regions second-level avoidance regions earthquake magnitude engineering construction methods engineering assessment methods/ E3030 Construction industry E0120D Planning E0210J Statistics E0240H Health and safety aspects |
中文摘要 | A probability model was developed to analyze seismic ground surface ruptures (SGSRs) to assess the faultage ground area for urban land use planning in China. The model parameters were statistically recovered from data for historically strong earthquakes in China, including 340 events with magnitudes over level 6 in mainland China since 1900. The study identified third-level hazardous regions and second-level avoidance regions with an analysis methodology based on the earthquake magnitude and cover thickness. The results give a two-stage analytical assessment method for land use, suitable SGSR levels based on 50 year probabilities, and suggestions for engineering construction methods. Engineering assessment methods are given for sites with strong ground surface ruptures. |
语种 | 中文 ; 中文 |
出版者 | Tsinghua Univ. Press ; China |
内容类型 | 期刊论文 |
源URL | [http://hdl.handle.net/123456789/27199] |
专题 | 清华大学 |
推荐引用方式 GB/T 7714 | Ma Donghui,Li Gang,Qian Jiaru. Probability assessment of land use suitability with ground surface ruptures induced by strong earthquakes[J],2010, 2010. |
APA | Ma Donghui,Li Gang,&Qian Jiaru.(2010).Probability assessment of land use suitability with ground surface ruptures induced by strong earthquakes.. |
MLA | Ma Donghui,et al."Probability assessment of land use suitability with ground surface ruptures induced by strong earthquakes".(2010). |
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