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岩质坡地建筑设计水平地震动放大系数的确定 被引量:22
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作者 李英民 王丽萍 赵耀 《地震工程与工程振动》 CSCD 北大核心 2010年第4期159-165,共7页
为确定岩质坡地建筑设计水平地震动放大系数,以满足实际工程中坡地建筑结构设计的需要,本文采用有限元数值分析方法,计算了高度在10~70 m范围,坡角在15°~60°范围内的28个黏弹性岩质坡地模型在白噪声输入下的线弹性响应,分析... 为确定岩质坡地建筑设计水平地震动放大系数,以满足实际工程中坡地建筑结构设计的需要,本文采用有限元数值分析方法,计算了高度在10~70 m范围,坡角在15°~60°范围内的28个黏弹性岩质坡地模型在白噪声输入下的线弹性响应,分析了坡高及坡角对坡地斜坡段反应谱及谱比的影响规律,给出了岩质坡地斜坡段设计水平地震动放大系数,为抗震规范有关内容的规定提供研究基础和依据。 展开更多
关键词 坡地建筑 反应谱谱比 设计地震动放大系数
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Effects of site conditions on earthquake ground motion and their applications in seismic design in loess region 被引量:8
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作者 WANG Lan-min WU Zhi-jian XIA Kun 《Journal of Mountain Science》 SCIE CSCD 2017年第6期1185-1193,共9页
The Loess Plateau is an earthquake prone region of China, where the effects of loess deposit on ground motion were discovered during the 2008 Wenchuan earthquake(Ms8.0) and the 2013 Minxian-Zhangxian earthquake(Ms6.6)... The Loess Plateau is an earthquake prone region of China, where the effects of loess deposit on ground motion were discovered during the 2008 Wenchuan earthquake(Ms8.0) and the 2013 Minxian-Zhangxian earthquake(Ms6.6). The field investigations, observations, and analyses indicated that large number of casualties and tremendous economic losses were caused not only by collapse and damage of houses with poor seismic performance, landslides, but also amplification effects of site conditions, topography and thickness of loess deposit, on ground motion. In this paper, we chose Dazhai Village and Majiagou Village as the typical loess site affected by the two earthquakes for intensity evaluation, borehole exploration, temporary strong motion array, micro tremor survey, and numerical analysis. The aim is to explore the relations between amplification factors and site conditions in terms of topography and thickness of loess deposit. We also developed site amplification factors of ground motion for engineering design consideration at loess sites. The results showed that the amplification effects are more predominant with increase in thickness of loess deposit and slope height. The amplification mayincrease seismic intensity by 1 degree, PGA and predominant period by 2 times, respectively. 展开更多
关键词 Loessial site Field investigation Ground motion observation Micro tremor observation Loess topography Loess thickness Site effects Seismic design
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