Identifying geometric configuration of earthquake-resistant buildings

Livian Teddy, Johannes Adiyanto, H. Hidayat
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引用次数: 0

Abstract

Indonesia is an earthquake-prone area because it is located at the world's most active tectonic plates and hundreds of local faults. Obviously, there have been many earthquake victims caused by collapsed buildings, hence the need for earthquake-resistant construction. However, there is not much guidance for architects to design earthquake-resistant buildings. This research proposes guidance for architects on how to design building forms relatively able to resist earthquakes. The simulation experiment method involving 32 building models in various forms was employed. The experimental results were then analyzed with modal analysis in ETABS and SVA for architectural design. Based on the analysis report, some guidelines were proposed: 1). Avoid buildings that are too slender, use the slenderness ratio H/D ≤ 2, 2). Avoid soft stories where the ratio of the top column height (h) to the bottom column height (h1) ≤ 0.8, 3). Use symmetrical shapes with 1 or 2 axes and avoid shapes with random compositions, 4). Use the additive and subtractive mass transformation ≤ 15%, 5).Strengthen the structural elements, install shear walls, or use dilatation to minimize potential torsional irregularities and non-parallel system irregularities of L, T, U, +, and Z forms6). Avoid using non-axial asymmetrical forms.
识别抗震建筑的几何结构
印度尼西亚是一个地震多发地区,因为它位于世界上最活跃的构造板块和数百个局部断层上。显然,由于建筑物倒塌造成了许多地震受害者,因此需要抗震建筑。然而,对于建筑师设计抗震建筑,并没有太多的指导。本研究为建筑师如何设计相对具有抗震能力的建筑形式提供了指导。采用了32个不同形式的建筑模型的模拟实验方法。然后利用ETABS和SVA软件对试验结果进行模态分析。根据分析报告,提出了一些指导方针:1).避免过于细长的建筑,使用长细比H/D≤2,2).避免软层,其上柱高(H)与下柱高(h1)之比≤0.8,3).使用1轴或2轴对称的形状,避免随机组成的形状,4).使用加减法质量变换≤15%,5).加强结构单元,安装剪力墙,或使用膨胀来最小化潜在的扭转不规则性和L、T、U、+和Z形式的非平行系统不规则性(6)。避免使用非轴向不对称的形式。
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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