期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
装配式免砂浆地面板块隔声减震安装构造施工技术分析
1
作者 王露华 刘丰钧 钟连群 《北方建筑》 2024年第2期82-85,共4页
装配式免砂浆地面板块隔声减震安装构造是由地面板块、找平层、即时贴等部分组成,不同地面板块之间设置有夹缝,夹缝内部填充适量弹性密封胶。地面板块和找平层采用即时贴进行粘贴,能有效节约其他水泥辅助材料,避免其因受到温度、湿度因... 装配式免砂浆地面板块隔声减震安装构造是由地面板块、找平层、即时贴等部分组成,不同地面板块之间设置有夹缝,夹缝内部填充适量弹性密封胶。地面板块和找平层采用即时贴进行粘贴,能有效节约其他水泥辅助材料,避免其因受到温度、湿度因素变化,而产生严重的空鼓问题。装配式免砂浆地面板块隔声减震安装构造的地面板块固定环节以干式作业为主,在施工现场进行组合安装,能有效控制铺贴施工时间,提高施工质量,绿色环保,减少水泥砂浆材料使用环节,地面减重量超过60%,可合理控制施工成本。利用模块化设计铺贴,减轻温度、湿度等因素的影响,结构稳定,延长使用寿命,提高减震隔音性能。 展开更多
关键词 干式工法 隔声地面 直铺地面 减震地面
下载PDF
GIS-based Evaluation on the Fault Motion-Induced Coseismic Landslides 被引量:2
2
作者 Ming-Wey HUANG Chien-Yuan CHEN +3 位作者 Tzu-Hsiu WU Chi-Ling CHANG Sheu-Yien LIU Ching-Yun KAO 《Journal of Mountain Science》 SCIE CSCD 2012年第5期601-612,共12页
Earthquake-induced potential landslides are commonly estimated using landslide susceptibility maps. Nevertheless, the fault location is not identified and the ground motion caused by it is unavailable in the map. Thus... Earthquake-induced potential landslides are commonly estimated using landslide susceptibility maps. Nevertheless, the fault location is not identified and the ground motion caused by it is unavailable in the map. Thus, potential coseismic landslides for a specific fault motion-induced earthquake could not be predicted using the map. It is meaningful to incorporate the fault location and ground motion characteristics into the landslide predication model. A new method for a specific fault motion-induced coseismic landslide prediction model using GIS (Geographic Information System) is proposed herein. Location of mountain ridges, slope gradients over 45~, PVGA (Peak Vertical Ground Accelerations) exceeded o.15 g, and PHGA (Peak Horizontal Ground Accelerations) exceeded o.25 g of slope units were representing locations that initiated landslides during the 1999 Chi-Chi earthquake in Taiwan. These coseismic landslide characteristics were used to identify areas where landslides occurred during Meishan fault motion-induced strong ground motions in Chiayi County in Taiwan. The strong ground motion (over 8 Gal in the database, 1 Gal = 0.0l m/s2, and 1 g = 981 GaD characteristics were evaluated by the fault length, site distance to the fault, and topography, and their attenuation relations are presented in GIS. The results of the analysis show that coseismic landslide areas could be identified promptly using GIS. The earthquake intensity and focus depthhave visible effects on ground motion. The shallower the focus depth, the larger the magnitude increase of the landslides. The GIS-based landslide predication method is valuable combining the geomorphic characteristics and ground motion attenuation relationships for a potential region landslide hazard assessment and in disaster mitigation planning. 展开更多
关键词 Coseismic landslide GIS Chi-Chiearthquake
下载PDF
Directivity Effect on PGV Attenuation Relationships in Silakhor Earthquake (2006, Mw6.1)
3
作者 Katayoun Behzadafshar Abbas Abbaszadeh Shahri 《Journal of Civil Engineering and Architecture》 2011年第12期1117-1125,共9页
Rupture directivity effect causes spatial variation in strong ground motion parameters. It causes difference between the strike- normal (V.) and strike-parallel (Vp) components of horizontal ground motion amplitud... Rupture directivity effect causes spatial variation in strong ground motion parameters. It causes difference between the strike- normal (V.) and strike-parallel (Vp) components of horizontal ground motion amplitudes. These variations become significant for strong ground motion velocity and the authors have developed a modification to define directivity effect factor to account for the effect of rupture directivity in empirical velocity attenuation relations which are based on modeling Silakhor earthquake, using finite element method by ANSYS. The ground motion parameters that are modified include ratio of Vn/Vp component of horizontal velocity and Vn component to average horizontal velocity (V). The ratio of Vn to Vp is large in both the forward directivity direction, where velocity is larger, and in the backward directivity direction, where velocity is smaller. Therefore the authors expected that the Vn/Vp was mainly controlled by directivity angle. Also the variation of fault normal velocity to average horizontal velocity ratio by directivity angle (0) is defined from earthquake modeling. It shows Vn/V is controlled by directivity angle, distance between the site, epicenter and rupture length. This ratio has the same trend in Silakhor earthquake strong ground velocity data. In this paper the equation for Vn/Vp variations by directivity angle is recommended. The authors used Somervill et al. (1997) directivity model parameters as (R/L) cos2 ~ to define directivity effect on Vn/V ratio and therefore directivity factor is determined to account in near field empirical strong ground velocity attenuation relationships. 展开更多
关键词 DIRECTIVITY Silakhor earthquake velocity attenuation relationships
下载PDF
Preliminary Research on the Characteristics of the M_S8.0 Wenchuan Earthquake Hazard
4
作者 Li Zhiqiang Yuan Yifan +5 位作者 Li Xiaoli Zhang Qin Dai Boyang Ye Youqing Ge Peifeng Zeng Jie 《Earthquake Research in China》 2009年第3期278-298,共21页
The Ms8.0 Wenchuan earthquake on May 12, 2008 caused heavy casualties and economic loss. According to the field investigations, the characteristics can be described as follows: The meizoseismai region with an intensi... The Ms8.0 Wenchuan earthquake on May 12, 2008 caused heavy casualties and economic loss. According to the field investigations, the characteristics can be described as follows: The meizoseismai region with an intensity of XI shows an obviously zonal distribution and suffered serious destruction from the earthquake, and the destruction perpendicular to the earthquake surface rupture decreased sharply. At the same time, the intensity X and IX regions perpendicular to the rupture are narrow and therefore their coverage area is small. The intensity on both sides of the rupture attenuates rapidly, but intensity VII and the VI regions are wide, the latter covering about 240,000 km^2. In intensity VI region, the damage area perpendicular to the rupture in the southern part is much larger than that of the northern part. Also, much new understanding about destruction types and destructive modes for all kinds of buildings, landforms and terrain is achieved in this paper. 展开更多
关键词 Ms8.0 Wenchuan earthquake Characteristics of earthquake hazard Intensitydistribution
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部