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Performance and damages of reinforced concrete buildings during the October 23 and November 9, 2011 Van, Turkey, earthquakes

机译:在2011年10月23日至11月9日发生的地震中,钢筋混凝土建筑物的性能和损坏

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In this paper, it aimed to investigate the performance and damages of reinforced concrete buildings during October 23 (Ercis) and November 9 (Edremit), 2011 Van earthquakes in Turkey. A total of 28,000 buildings are damaged or collapsed in the city center and surrounding villages after the Ercis earthquake. This number increased to 35,000 after the Edremit earthquake. Large proportion of non-engineering reinforced concrete buildings completely collapsed or were damaged heavily. Most of the reinforced concrete buildings in the affected area are not designed and constructed in accordance with Turkish Earthquake Resistant Design Code. The cracking and failure patterns of the reinforced concrete buildings are examined. Seismic code requirements are discussed and compared with observed details. It is seen that the damages are due to several reasons such as site effect, location, and length of the fault, the poor construction quality, the poor concrete strength quality and unribbed reinforcement steel, poor detailing in beam column joints, strong beam-weak columns, soft stories, weak stories, inadequate transverse reinforcement, existence of short lap splices and incorrect end hook angle, short columns, weak walls, inadequate safe distance between buildings, unconfined gable walls, concrete slab failures, insulation materials, broken staircase slab and cracks at the corners of the windows and doors. Also, it is emerged that 26% of the buildings have no building license, 66% of the buildings' ground floor is used as a shop, 36% of the buildings have no static project, building (static) projects of 57% of the structures are insufficient, 57% of the buildings are not constructed in accordance with their static project, 74% of the static projects have no detail drawings and hoops densifications, the majority of the buildings have not got sufficient compressive strength according to the related earthquake code, aggregate dimensions are larger than maximum aggregate diameter for concrete, 60% of the building was constructed using unribbed reinforcement steel, and the majority of the buildings (85%) have not got any soil report. In addition to these reasons, the two earthquakes hit the reinforced concrete buildings within 17 days, causing progressive damage.
机译:本文旨在研究2011年10月23日(爱西斯)和11月9日(埃德雷米特)2011年土耳其范地震中钢筋混凝土建筑物的性能和破坏。厄里西斯地震后,市中心和周围村庄共有28,000座建筑物被破坏或倒塌。埃德雷米特(Edremit)地震后,这个数字增加到35,000。大部分非工程用钢筋混凝土建筑物完全倒塌或被严重破坏。受灾地区的大多数钢筋混凝土建筑物均未按照土耳其抗震设计规范进行设计和建造。检查了钢筋混凝土建筑物的破裂和破坏模式。讨论了地震规范要求,并与观察到的细节进行了比较。可以看出,损坏是由于以下几个原因造成的:现场效应,位置和断层长度,不良的施工质量,不良的混凝土强度质量和不带肋的钢筋,梁柱接头的细节不良,梁弱立柱,软故事,薄弱故事,横向钢筋不足,短搭接接头和不正确的末端挂钩角度,短柱,薄弱墙,建筑物之间的安全距离不足,山墙无限制,混凝土板破坏,保温材料,楼梯板破损和门窗角落处的裂缝。此外,还出现了26%的建筑物没有建筑物许可证,66%的建筑物底层用作商店,36%的建筑物没有静态项目,57%的建筑物(静态)项目。结构不充分,57%的建筑未按照其静态工程建造,74%的静态工程没有详细图纸和箍密实度,根据相关的地震法规,大多数建筑物的抗压强度不足,骨料尺寸大于混凝土的最大骨料直径,其中60%的建筑物是用无肋钢筋建造的,大多数建筑物(85%)没有土壤报告。除这些原因外,两次地震在17天内袭击了钢筋混凝土建筑,造成了逐步破坏。

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