首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 203 毫秒
1.
对汶川地震中极震区的现场震害调查资料进行了统计分析,分析了钢筋混凝土框架结构、砖混结构、底框架结构3种结构形式的破坏特征和受损原因。分析表明,经抗震设防的房屋震害明显低于未经抗震设防的房屋,实现了预期的抗震设防目标;在经抗震设计的房屋中,钢筋混凝土框架结构的表现是最好的,其次是砖混结构,表现最差的是底框架结构。  相似文献   

2.
2013年11月22日,木里、盐源交界处先后发生Ms3.4、Ms 4.1及Ms3.7级地震,地震造成当地自建房屋破坏,震中区建筑类型主要为土木结构、夯土墙结构及木结构。本文在现场调查的基础上,对不同类型建筑物的破坏特征进行了分析,给出了地震烈度图,分析了建筑物破坏原因,指出土木结构及夯土墙结构是农村自建房屋中抗震最不利建筑,木结构房屋抗震性能相对较好。房屋抗震性能不佳是此次地震震害较重的主要原因。  相似文献   

3.
四川兴文5.7级地震共致宜宾市兴文县、珙县和长宁县3个县22个乡镇受灾,震区抗震设防烈度为Ⅵ度。震区主要建筑物结构类型为框架结构、砖混结构、砖木结构和土木结构,大多数房屋没有经过抗震设防加固,抗震性能一般。通过对震区3个县68个抽样点的调查,发现框架结构和设防砖混结构在此次地震中表现出了良好的抗震性能。同时对不同结构类型房屋的构造方式、分布情况和震害特点进行了分析,并针对不同的震害特征,为今后该地区的灾后恢复重建和防震减灾工作提出了对策建议。  相似文献   

4.
2013年7月22日甘肃岷县漳县MS6.6地震灾害特点分析   总被引:1,自引:0,他引:1  
2013年7月22日在甘肃省定西市岷县-漳县交界地区(34.5°N,104.2°E)发生MS6.6地震,造成95人死亡,中国地震局启动地震应急Ⅱ级响应.根据现场调查,这次地震最高烈度为Ⅷ度.震区建筑90%以上为土木结构和木结构,且多为老旧房屋,抗震性能差.加之震前灾区持续降雨,造成房屋地基和生土墙体支撑强度降低.与其他地震区相比,相同烈度下土木结构和木结构破坏比例偏大,砖结构和砖混结构破坏明显偏轻.降雨加上巨厚的黄土沉积,导致地震滑坡比较严重.由于这些原因,Ⅷ度区范围偏大,Ⅵ区也相对较大.甘肃定西是中国经济欠发达地区之一,土木结构和抗震性能较差的木结构房屋比例过大.震后重建中,建议以砖木结构和砖混结构为主重建灾区.  相似文献   

5.
基于汶川地震等6次典型破坏性地震的震害调查资料,采用基于震害数据调查的经验分析法得出了川西地区农居建筑基于地震烈度的地震易损性矩阵,并采用房屋震害矩阵曲线化分析方法转化计算得出该地区基于地震峰值加速度的地震易损性矩阵。通过分析该地区5类农居建筑的破坏概率和对易损性指数的计算分析,得出不同结构农居建筑的抗震性能排序和抗倒塌能力排序,即穿斗木结构的抗震性能最好,土木结构的抗震性能最差,其余结构类型的抗震性能顺序依次是未设防砖混结构、砖木结构、砖石结构。同时,穿斗木结构的抗倒塌性能最好,然后依次是未设防砖混结构和砖木结构,而土木结构和砖石结构是抗倒塌性能最差的2种结构类型。  相似文献   

6.
2013年4月20日四川芦山7.0级地震给震区建筑结构造成了严重破坏.本文选择不同烈度区典型震害的钢筋混凝土框架结构,介绍了结构梁柱、填充墙、其他附属构件及地基等的破坏特点,分析了各类震害特征与破坏机理.结果显示,钢筋混凝土框架结构在本次地震中表现出了良好的抗震性能,除了极震区个别建筑框架柱发生了结构性破坏外,地震区绝大部分均为非结构性破坏,如填充墙及其他附属构件破坏,且大部分破坏不影响结构框架承重体系继续使用.最后针对该次地震中钢筋混凝土框架结构存在的主要问题,给出了一些钢筋混凝土框架结构设计与建设改进建议.  相似文献   

7.
<正>我国地震多发且震害严重,震害的主要表现是人员伤亡,而导致人员伤亡的最重要因素是房屋倒塌。汶川地震显示,在我国中小城镇,地震破坏严重的建筑结构类型主要有底商多层砌体结构、多层RC框架结构、多层砖混结构,其中极震区底商多层砌体结构倒塌比率达85%。分析这类房屋倒塌机理,提出相应的抗倒塌设计方法及对既有建筑抗倒塌加固方法十分必要。本文通过对汶川地震极震区中底商多层砌体结构好、坏两种典型代表进行深入剖析,通  相似文献   

8.
2009年姚安6.0级地震震害特征分析   总被引:2,自引:1,他引:1  
介绍了姚安6.0级地震震区的土木结构、砖木结构、砖混结构和框架结构房屋、生命线系统的概况及震害特征。分析了各种破坏产生的机理,提出了震区在恢复重建与规划发展时的建议、各类建(构)筑物加强抗震的措施。  相似文献   

9.
村镇房屋是历次震害中最薄弱的建筑,提高其抗震性能刻不容缓。本文依据《中国地震动参数区划图》(GB18306-2015)的地震动峰值加速度、反应谱特征周期和地震烈度的取值,以陕南6县18镇54个自然村的1161栋村镇房屋为抽样样本,完成样本的结构类型、结构类型的破坏比及破坏损失比、场地条件、抗震概念设计、村民的抗震知识和抗震防灾意识等现状的统计分析。结果表明:陕南村镇房屋的结构类型有生土结构、木结构、砖木结构、砖混结构和框架结构,其中砖混结构是其主要的抗震结构类型;砖木结构、砖混结构和框架结构在不同地震烈度影响下的破坏比有差异,而破坏损失比相同;陕南村镇房屋的场地条件变化复杂,抗震概念设计存在缺陷且村民的抗震知识和抗震防灾意识淡薄,亟待提高。  相似文献   

10.
汶川地震房屋震害的一些现象分析   总被引:1,自引:0,他引:1  
汶川8.0级地震造成了大量工程结构的破坏和倒塌,基于作者对此次地震重灾区房屋震害现场调查的第一手资料,分别从砖混、框架结构房屋及砖木、木构架结构民居等方面,分析了房屋的破坏形态,对其破坏原因进行了初步探讨。通过几个典型房屋震害现象,分析了建筑抗震结构形式的合理性问题。  相似文献   

11.
汶川地震中离震中较远地区的高层建筑的震害   总被引:2,自引:1,他引:1  
汶川地震中,陕西省西安市和宝鸡市两地处于远震区。远震区高层建筑比多层建筑的震害重。这两地高层建筑的震害主要表现为砌体填充墙和隔墙普遍出现裂缝;房屋顶部附近防震缝两侧的装饰材料震损,部分混凝土构件被撞坏;楼梯间的填充墙普遍开裂等。主体结构中的混凝土梁、柱和剪力墙等承重构件一般没有可见裂缝,部分剪力墙洞口连梁及框架一剪力墙结构中的连梁出现剪切斜裂缝或弯曲裂缝。文中初步分析了震害原因,并提出了设计建议。  相似文献   

12.
通过对4片西北地区传统土坯墙体在低周往复荷载作用下的抗震性能试验研究,对比分析了竹胶板及木柱木梁加固墙片的破坏形态、水平承载力、变形性能、骨架曲线、刚度退化曲线、滞回曲线与耗能性能。试验研究表明:加固墙片可有效提高墙体的抗震性能。在此基础上提出用竹胶板加固既有且在用的村镇土坯墙体房屋,该加固方式经济有效,又能在一定程度上保存建筑原始风貌,满足实际工程的设计要求。  相似文献   

13.
郭龙龙    袁康    裴城    王玉山   《世界地震工程》2019,35(4):060-67
针对我国村镇地区仍广泛存在生土结构房屋,且其结构整体性及抗震性能较差的现状,提出一种可有效提高其抗震性能、具有施工便捷性和装配属性的新型钢节点木构架-生土墙结构形式。进行了新型钢节点木构架-生土墙与农房中常见的素生土墙、上土坯下砖砌体混砌墙、传统榫接木构架-生土墙的拟静力对比试验,比较了4个墙体试件的破坏形态、滞回曲线和骨架曲线特征,以及延性系数、耗能能力、极限层间位移角等抗震性能指标。研究表明:素生土墙和上土坯下砖砌体混砌墙抗震性能较差,木构架的约束作用可有效提升生土墙的抗剪承载力和延性,新型钢节点连接的木构架-生土墙抗震性能优于榫接形式,具备一定的推广应用价值。  相似文献   

14.
青海玛多7.4级地震发生后,本文作者随科考队开展了典型工程的震害调查。本文报道了黄河乡江旁村和昌马河工区这2个典型调查点的建筑震害情况。调查表明:邻近微观震中的黄河乡建筑震害程度相对较轻,主要表现为部分房屋落瓦,砖混结构少数承重墙及框架结构部分隔墙开裂,土木结构房屋部分严重破坏,部分围墙倒塌;而距微观震中以东85 km的昌马河工区建筑震害则相对较重:无抗震措施的砖木结构房屋全部严重破坏或倒塌,具备合理抗震措施的砖混结构基本完好或轻微破坏,在建轻钢厂房均钢柱倾斜、维护墙明显开裂并且围墙多数倒塌。调查分析表明:造成两地震害差异的主要原因为抗震措施差异以及地表破裂和砂土液化影响:黄河乡多数房屋具备合理抗震措施,昌马河工区多数民居缺少抗震措施;昌马河工区附近发现疑似地表破裂痕迹,而紧邻黄河乡的河岸发现砂土液化迹象。这表明昌马河工区的地震作用中类似近场的高频能量可能较多,而黄河乡地区则因砂土液化使得高频地震动作用有所降低,由此造成两地震害程度与震中距呈现反差关系。  相似文献   

15.
Reinforced concrete (RC) buildings in Nepal are constructed with RC frames and masonry infill panels. These structures exhibit a highly non-linear inelastic behavior resulting from the interaction between the panels and frames. This paper presents an extensive case study of existing RC buildings in Nepal. Non-linear analyses were performed on structural models of the buildings considered as a bare frame and with masonry infill, in order to evaluate the influence of infill walls on the failure mechanisms. Five three-storey buildings with different structural configurations and detailing were selected. The effect of masonry infill panels on structural response was delineated by comparing the bare-framed response with the infill response. Seismic performance is evaluated with regard to global strength, stiffness, energy dissipation, inter-storey drift, and total deflection of the structure. A parametric analysis of structures with masonry infill is also performed. For this, the influence of different material properties is studied, namely diagonal compressive stress, modulus of elasticity and tensile stress of masonry infill panels. Study results show that masonry infill increases the global strength and stiffness of the structures; it decreases the inter-storey drift and hence the total displacement of the structure. The results quantify the influence of the infill panels on structural response and, in particular, the effect of the diagonal compressive strength of the masonry wall.  相似文献   

16.
Masonry buildings are primarily constructed out of bricks and mortar which become discrete pieces and cannot sustain horizontal forces created by a strong earthquake.The collapse of masonry walls may cause significant human casualties and economic losses.To maintain their integrity,several methods have been developed to retrofit existing masonry buildings,such as the constructional RC frame which has been extensively used in China.In this study,a new method using precast steel reinforced concrete(PSRC)panels is developed.To demonstrate its effectiveness,numerical studies are conducted to investigate and compare the collapse behavior of a structure without retrofitting,retrofitted with a constructional RC frame,and retrofitted with external PSRC walls(PSRCW).Sophisticated finite element models(FEM)were developed and nonlinear time history analyses were carried out.The results show that the existing masonry building is severely damaged under occasional earthquakes,and totally collapsed under rare earthquakes.Both retrofitting techniques improve the seismic performance of existing masonry buildings.However,it is found that several occasional earthquakes caused collapse or partial collapse of the building retrofitted with the constructional RC frame,while the one retrofitted by the proposed PSRC wall system survives even under rare earthquakes.The effectiveness of the proposed retrofitting method on existing masonry buildings is thus fully demonstrated.  相似文献   

17.
Experimental tests have shown that unreinforced masonry (URM) infill walls are affected by simultaneous loading in their in-plane and out-of-plane directions, but there have been few attempts to represent this interaction in nonlinear time history analysis of reinforced concrete (RC) buildings with URM infill walls. In this paper, a recently proposed macro-model that accounts for this interaction is applied to the seismic analysis of RC framed structures with URM infill walls representative of Mediterranean building stock and practices. Two RC framed structures that are representative of low and mid-rise residential buildings are analysed with a suite of a bidirectional ground motions, scaled to three different intensities. During the analyses, the in-plane/out-of-plane interaction is monitored, showing that cracking of the infills occurs predominantly by in-plane actions, while failure occurs due to a combination of in-plane and out-of-plane displacements, with the out-of-plane component usually playing the dominant role. Along the frame height, the bottom storeys are generally the most damaged, especially where thin infill walls are used. These results are consistent with observations of damage to URM infill walls in similar buildings during recent earthquakes.  相似文献   

18.
Motivated by the seismic damage observed to reinforced concrete (RC) frame structures during the Wenchuan earthquake, the effect of infill walls on the seismic performance of a RC frame is studied in this paper. Infill walls, especially those made of masonry, offer some amount of stiffness and strength. Therefore, the effect of infill walls should be considered during the design of RC frames. In this study, an analysis of the recorded ground motion in the Wenchuan earthquake is performed. Then, a numerical model is developed to simulate the infill walls. Finally, nonlinear dynamic analysis is carried out on a RC frame with and without infill walls, respectively, by using CANNY software. Through a comparative analysis, the following conclusions can be drawn. The failure mode of the frame with infill walls is in accordance with the seismic damage failure pattern, which is strong beam and weak column mode. This indicates that the infill walls change the failure pattern of the frame, and it is necessary to consider them in the seismic design of the RC frame. The numerical model presented in this paper can effectively simulate the effect of infill walls on the RC frame.  相似文献   

19.
From the beginning of the twentieth century, and due to the rapid increase of reinforced concrete (RC) usage, mixed masonry–RC buildings have emerged. In Lisbon, Portugal, old mixed masonry–RC buildings appeared between 1920 and 1960, representing the transition period between masonry and proper RC. These buildings are often integrated in blocks, and frequently share the side-walls, implying, thus, the need to assess the seismic vulnerability of building aggregates. The present paper approaches the seismic vulnerability assessment of a specific type of old mixed masonry–RC buildings in Lisbon. The study comprises the analysis of a building, both as an isolated structure and inserted in its aggregate, using two approaches: (1) linear dynamic analysis with SAP2000 and (2) nonlinear static analysis by means of 3Muri/Tremuri software. A comparison of both approaches derives a good matching between the obtained results. However, a nonlinear analysis is required to identify, in an adequate manner, the critical areas of the structure requiring strengthening.  相似文献   

20.
A wide number of experimental studies conducted in latest years pointed out the high influence of the mechanical properties of masonry units and mortar bed joints on lateral strength and stiffness of masonry panels. This feature significantly modifies the global response of infilled frames under seismic actions as well as the local interaction phenomena. Despite a wide investigation on the influence of the infills on global behaviour of reinforced concrete (RC) frames has already been provided, different features characterizing the seismic performances of buildings suggest the need of accurately evaluating local interaction phenomena as well as the influence of the panel on specific and relevant aspects, as the accelerations transferred to non-structural components. This study provides a parametrical analysis of the influence of shear strength and elastic modulus of masonry infills on the seismic behaviour of RC frames originally designed for gravity loads. Regular buildings with different height were analysed using the Incremental Dynamic Analysis in order to provide fragility curves, investigate on the collapse mechanisms and define the floor spectra depending on the properties of the infills. Results obtained pointed out the high influence of the considered parameters on the fragility of existing RC frames, often characterized by inadequate transversal reinforcement of columns, which may lead to brittle failure due to the interaction with the infills. Floor response spectra are also significantly affected by the influence of masonry infills both in terms of shape and maximum spectral accelerations. Lastly, on the basis of the observed failure mechanisms, a parameter defining the ductility of the frames depending on the properties of the infills was also provided (Capacity Design Factor). The correlation between the mechanical properties of the infills and this parameter suggests its reliability in the simplified vulnerability analysis of existing buildings as well as for the design of new buildings.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号