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首页> 外文期刊>Engineering Structures >Multitechnical approach for damage assessment and reinforcement of buildings located on subsiding areas: Study case of a 7-story RC building in Murcia (SE Spain)
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Multitechnical approach for damage assessment and reinforcement of buildings located on subsiding areas: Study case of a 7-story RC building in Murcia (SE Spain)

机译:评估和加固位于下沉区域的建筑物的多技术方法:穆尔西亚(西班牙东南部)一座7层RC建筑物的研究案例

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摘要

The work presented herein proposes a multitechnical methodology for damage assessment and reinforcement of buildings located on areas affected by land subsidence induced by water withdrawal. The proposed methodology is illustrated by a comprehensive damage assessment and subsequent reinforcement of a 7-story reinforced concrete building located in the city of Murcia (SE Spain). Construction took place in the 1980s and the building was severely damaged by differential settlements caused by land subsidence throughout time. The building suffered an important tilting, presenting maximum settlement of 260 mm and a maximum horizontal displacement at the top of the building of 177 mm, which considerably reduced its habitability and security conditions. Damage began to manifest in 1995, coinciding with an intense drought that affected the Murcia area between 1991 and 1995. Average piezometric level decreases of at least 8 m were verified, reaching 10 m in the nearby areas of the building. These piezometric level decreases caused important consolidation settlements that seriously damaged the structure of the building. The proposed multitechnical damage assessment methodology was used to characterize the causes of damage, design reinforcement actions, and carry out subsequent monitoring to guarantee the structural stability of the building.
机译:本文介绍的工作提出了一种多技术方法,用于评估和加固位于因排水引起的地面沉降影响区域上的建筑物。通过全面的损害评估以及随后对位于穆尔西亚(西班牙东南部)市的7层钢筋混凝土建筑的加固,来说明所建议的方法。施工于1980年代进行,整个时期由于地面沉降造成的差异性沉降严重破坏了该建筑。建筑物严重倾斜,最大沉降量为260毫米,建筑物顶部的最大水平位移为177毫米,这大大降低了其可居住性和安全性条件。损坏从1995年开始显现,与1991年至1995年影响穆尔西亚地区的强烈干旱相吻合。已验证平均测压线降低至少8 m,在建筑物附近区域达到10 m。这些测压高度的降低导致重要的固结沉降,严重破坏了建筑物的结构。拟议的多技术损伤评估方法用于表征损伤原因,设计加固措施,并进行后续监控以确保建筑物的结构稳定性。

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