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      Analisis Kinerja Struktur Gedung Asrama A5 IPB terhadap Beban Gempa dengan Metode Analisis Respon Spektrum

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      Date
      2021
      Author
      Elba, Shinta Fatina
      Fauzan, Muhammad
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      Abstract
      Karena banyaknya aktifitas di gedung bertingkat yang menyangkut keselamatan banyak orang, pembangunan gedung tinggi di Indonesia harus mengikuti standarisasi bangunan tahan gempa. Tujuan penelitian ini melakukan pemodelan dan pembebanan struktur menggunakan software SAP2000, menganalisis struktur atas gedung dengan analisis respon spektrum dan mengetahui ketahanan struktur atas gedung Asrama A5 IPB terhadap beban gempa berdasarkan SNI 1726:2019. Penelitian diawali dengan studi literatur, dilanjutkan dengan pengumpulan data, pemodelan struktur, perhitungan pembebanan, analisis struktur dan evaluasi struktur. Partisipasi massa dari struktur yang dimodelkan telah mencapai lebih dari 90% sehingga telah sesuai syarat di SNI. Gaya geser dasar dinamik kurang dari 100% dari gaya geser dasar statik sehingga perlu diberikan faktor skala. Nilai faktor skala yang diberikan pada arah X adalah 1,579 dan pada arah Y adalah 1,896. Secara keseluruhan simpangan antar tingkat yang terjadi tidak melebih simpangan izin yang disyaratkan. Sehingga gedung aman terhadap keruntuhan akibat beban gempa yang ditinjau berdasarkan keamanaan terhadap kinerja batas ultimit.
       
      Due to the many activities in high-rise buildings that involve the safety of many people, the construction of high-rise buildings in Indonesia must follow the standardization of earthquake-resistant buildings. The purpose of this study is to model and load structures using SAP2000 software, analyze the superstructure of the building with response spectrum analysis and determine the resistance of the superstructure of the A5 IPB Dormitory building to earthquake loads based on SNI 1726:2019. The research begins with a literature study, followed by data collection, structural modeling, loading calculations, structural analysis and structural evaluation. Mass participation from the modeled structure has reached more than 90% so that it has complied with the requirements in SNI. The dynamic base shear is less than 100% of the static base shear, so it is necessary to give a scale factor. The scale factor value given in the X direction is 1.579 and in the Y direction is 1.896. Overall, the deviation between levels that occurred did not exceed the required permit deviation. So that the building is safe against collapse due to earthquake loads which are reviewed based on the safety of the ultimate limit performance.
       
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      http://repository.ipb.ac.id/handle/123456789/109193
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      • UT - Civil and Environmental Engineering [810]

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      Copyright © 2020 Library of IPB University
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      Contact Us | Send Feedback
      Indonesia DSpace Group 
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