Effect of Soil Type on Lateral Displacement of Reinforced Concrete Building

Dermawan Zebua, L. S. Wibowo
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引用次数: 1

Abstract

As has happened in various cases of earthquakes, the impact caused by each earthquake event varies, because the earthquake shaking that occurs on the ground is not only influenced by the distance and strength of the earthquake, but also by local soil conditions which are related to the amplification phenomenon. earthquake waves are influenced by the type and thickness of the soil/sediment layer above the bedrock. Reinforced concrete storey buildings are designed to withstand both vertical and horizontal loads. The taller the building, the greater the lateral load that will be received by the building structure. In the design of earthquake-resistant structures, the inelastic behavior of the structure is highly expected for the occurrence of earthquake energy dispersion during both moderate and strong earthquakes. In earthquake-prone countries such as Indonesia, it is required to comply with applicable national standards and the structure can still function and be safe from earthquakes affected by the earthquake. The purpose of this study was to determine how much influence the type of soil has on the lateral displacement of a 10-story reinforced concrete building using shear walls in accordance with earthquake building regulations (SNI 1726, 2019) and loading (SNI 1727, 2020). The results obtained that soft soil types have the largest displacement value with a value of 91,831 mm and hard rock soil types have the smallest displacement value with a value of 44,114 mm.
土体类型对钢筋混凝土建筑侧移的影响
正如在各种地震案例中所发生的那样,每次地震事件所造成的影响是不同的,因为发生在地面上的地震震动不仅受地震的距离和强度的影响,还受与放大现象有关的当地土壤条件的影响。地震波受基岩上方土壤/沉积层的类型和厚度的影响。钢筋混凝土楼房的设计既能承受垂直荷载,也能承受水平荷载。建筑越高,建筑结构所承受的横向荷载就越大。在抗震结构的设计中,无论是在中地震还是强地震中,结构的非弹性性能都是人们高度期望的。在印度尼西亚这样的地震多发国家,它被要求符合适用的国家标准,结构仍然可以发挥作用,并且不受地震影响。本研究的目的是根据抗震建筑规范(SNI 1726, 2019)和荷载(SNI 1727, 2020),确定土壤类型对采用剪力墙的10层钢筋混凝土建筑的侧向位移有多大影响。结果表明:软土类型的位移值最大,为91831 mm,硬岩类型的位移值最小,为44114 mm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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