EVALUASI KINERJA STRUKTUR BANGUNAN BETON BERTULANG DI TANAH KHUSUS BERDASARKAN ANALISIS PUSHOVER

EVALUASI KINERJA STRUKTUR BANGUNAN BETON BERTULANG DI TANAH KHUSUS BERDASARKAN ANALISIS PUSHOVER

  • halima tusadiyah Mahasiswa

Abstract

Site class F is a profile of soil layers that are prone to failure or collapse due to earthquake loads such as liquefaction, highly sensitive clays, weak cemented soils, and highly organic clays that require specific geotechnical investigations and site-specific response analysis. One of the factors that influence design of earthquake-resistant the building structures is condition of the soil layer and and analysis structure. This study aims to evaluate the performance of reinforced concrete structures on site class F using the pushover analysis method. Pushover analysis is a non-linear static method in which a structure is subjected to gravitational loading and a lateral load pattern controlled by monotonic displacement which continues to increase through elastic and inelastic behavior until final conditions are reached. The results showed that the performance level of the pushover analysis structure based on the ATC-40 structure is included in the Damage Control category level.

References

Arifin, Z., Suyadi., Sebayang, S., 2015. Analisis Struktur Gedung POP Hotel Terhadap Beban Gempa Dengan Metode Pushover Analysis. JRSSD, 3(3), 427-440.
ATC-40., 1996. Applied Tecnology Council - 40 Seismic Evaluation and Retrofit of Concrete Building Volume 1. California: California Seismic Safety Commision.
Badan Penelitian dan Pengembangan Puslitbang Perumahan dan Permukiman., 2019. Manual Aplikasi Online Spektrum Respons Desain Indonesia 2019. Jakarta.
Badan Standardisasi Nasional., 2019. SNI 1726:2019 Tata Cara Perencanaan Ketahanan Gempa Untuk Struktur Bangunan Gedung dan Non Gedung. Jakarta.
Chin, K. H., 2010. Evaluation of Seismic Response of a Site Class F Site Using Equivalent Linear and Nonlinear Computer Codes. In 5th International Conference on Recent Advances in Geotechnical Earthquake Engineering and Soil Dynamics. San Diego, 2010.
Chopra, A. K ., 2012. Dynamics of Structures Theory and Applications to Earthquake Engineering, 4th ed. California: Prentice Hall.
FEMA 273., 1997. Federal Emergency Management Agency 273 Nehrp Guidelines for The Seismic Rehabilitation of Buildings. Washington, D.C: Federal Emergency Management Agency.
Sultan. M. A., 2016. Evaluasi Struktur Beton Bertulang Tahan Gempa Dengan Analisa Pushover. Jurnal Sains, 6(11), 1-8.
Tavio & Wijaya, Usman., 2018. Desain Rekayasa Gempa Berbasis Kinerja. 2nd ed. Yogyakarta: ANDI.
Published
2021-06-30
Section
Articles
PDF (Bahasa Indonesia)
Abstract views: 164
downloads: 139