ANALISIS PERPINDAHAN PADA STRUKTUR BANGUNAN MENGGUNAKAN BASE ISOLATOR DI WILAYAH GEMPA KUAT

Muliadi Muliadi, M. Afifuddin, T. B. Aulia
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Abstract

The meeting of three major tectonic plates makes Indonesia prone to earthquakes, be it the Indo-Australian plate, the Eurasian plate, and the Pacific plate. Earthquakes are caused by the release of energy generated by the pressure caused by moving plates. Its essence is not earthquake that damage building but anticipation of building which must be in earthquake resistant design. In this case, the building structure must be designed to be earthquake resistant. One of earthquake resistant building technology is technology with base isolator system. This study aims to determine the displacement analysis that occurs due to the effects of earthquake on the structure of the building. Both in the use of base isolator and without using base isolator. The design of this structure is done by analyzing the time dynamic history load in the SRPMK building (struktur rangka pemikul momen khusus). With 10 storey floor building, regular shape, in SRPMK building. The structural elements reviewed in analyzing the displacement of the building structure are in a column, either for fixed base building of SRPMK or for SRPMK building with base isolator. Data analysis is done by using SAP2000 computer software. The result of analysis shows that the maximum fixed column SRPMK structure building structure on the 3rd floor reaches 27.97 mm from the base of the SRPMK fixed base. While at the base of the isolator there is a displacement of 5.79 mm from the base of SRPMK base isolator. The result of analysis shows that the building of SRPMK base isolator compared with SRPMK building, the value of displacement of final floor level structure (floor 10) can be reduced to 15.85%. Application of base isolator in this case can be used as its function can reduce earthquake load.Keyword : base isolator, displacement, SRPMK; analysis of time history.
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印度-澳大利亚板块、欧亚板块和太平洋板块这三大板块的交汇,使得印尼容易发生地震。地震是由板块运动产生的压力所产生的能量释放引起的。它的本质不是地震对建筑物的破坏,而是对建筑物进行抗震设计的预期。在这种情况下,建筑结构必须设计成抗震的。抗震建筑技术之一是基础隔震技术。本研究旨在确定由于地震对建筑物结构的影响而发生的位移分析。无论是在使用基极隔离器还是不使用基极隔离器。通过分析SRPMK建筑的时动力历史荷载,对结构进行了设计。有10层楼的建筑,规则的形状,在SRPMK建筑。在分析建筑物结构位移时,无论是固定基础的SRPMK建筑物,还是带基础隔振器的SRPMK建筑物,所审查的结构单元都在一柱内。数据分析采用SAP2000计算机软件进行。分析结果表明,3楼SRPMK结构建筑结构的最大定柱距SRPMK固定底座27.97 mm。而在隔离器的底部,与SRPMK基础隔离器的底部有5.79 mm的位移。分析结果表明,与SRPMK结构相比,SRPMK结构的最终层位结构(10层)的位移值可降低到15.85%。在这种情况下可以采用基础隔震器,因为它的作用可以降低地震荷载。关键词:基隔振器;位移;SRPMK;时间历史分析。
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