Effect of Building Height on Seismic Base Shear: An ETABS-Based Analysis

https://doi.org/10.59810/lejlace.v4i2.255

Authors

Keywords:

Building height, Building structure, ETABS, Response-spectrum analysis, Seismic base shear

Abstract

Multi-storey buildings exhibit different levels of seismic vulnerability as structural height increases. Seismic base shear is a key parameter in earthquake-resistant design and is strongly influenced by the dynamic characteristics of a building. This study evaluates the effect of variations in building height on base shear using ETABS. Reinforced-concrete building models with different numbers of storeys were analyzed using the response-spectrum method in accordance with SNI 1726. The results indicate that increasing building height significantly affects the fundamental natural period and the distribution of seismic forces. Taller buildings tend to exhibit longer vibration periods and relatively lower base shear than shorter buildings. The findings provide a technical reference for the safe and efficient structural design of multi-storey buildings.

References

Badan Standarisasi Nasional. 2019. “SNI 1726: Tata Cara Perencanaan Ketahanan Gempa Untuk Struktur Bangunan Gedung Dan Non Gedung.” 2019. https://www.slideshare.net/slideshow/sni-17262012-tata-cara-perencanaan-ketahanan-gempa-untuk-struktur-bangunan-gedung-dan-non-gedung/42933656.

Cahyani, Dini Indah, Ery Budiman, Budi Haryanto, Fachriza Noor Abdi, and Masayu Widiastuti. 2022. “Analisis Pushover Untuk Performance Based Design Pada Struktur Beton Bertulang Dengan Menggunakan Software Etabs (Studi Kasus: Proyek Hotel Fox Harris Lite Di Jln. S. Parman, Kota Samarinda, Kalimantan Timur).” Teknologi Sipil: Jurnal Ilmu Pengetahuan Dan Teknologi 6 (1): 30–37.

Chopra, Anil K. 2017. Dynamics of Structures: Theory and Applications to Earthquake Engineering. New York: Pearson Education.

Computer and Structures, Inc. 2020. ETABS Integrated Building Design Software User Interface Reference Manual. Berkeley,California.

Desimaliana, Erma, Nessa Valiantine Diredja, and Rizky Syahputra. 2022. “Analisis Pushover Terhadap Ketidakberaturan Horizontal Pada Struktur Gedung Baja Komposit.” RekaRacana: Jurnal Teknil Sipil 8 (2): 118. https://doi.org/10.26760/rekaracana.v8i2.118.

Fauziah, Lilik, Marthin D. J. Sumajouw, Servie O. Dapas, and Reky S. Windah. 2013. “Pengaruh Penempatan Dan Posisi Dinding Geser Terhadap Simpangan Bangunan Beton Bertulang Bertingkat Banyak Akibat Beban Gempa.” Jurnal Sipil Statik 1 (7): 466–72.

Istiono, Heri, and Azhar Yusuf Ramadhan. 2020. “Analisis Pengaruh P-Delta Effect Terhadap Perbedaan Ketinggian Struktur Gedung Tahan Gempa (Studi Kasus : Non-Highrise Building).” Rekayasa Sipil 14 (3): 218–26. https://doi.org/10.21776/ub.rekayasasipil.2020.014.03.8.

Istiono, Heri, Yanisfa Septiarsilia, Dita Kamarul Fitriyah, Indra Komara, and Felicia Tria Nuciferani. 2023. “Evaluasi Struktur Gedung Hotel Swiss-Belhotel Darmo Surabaya Menggunakan Analisis Pushover Berdasarkan SNI 1726-2019.” Jurnal Teknologi Dan Manajemen 4 (2): 97–110.

Kusuma, Rio Aditya. 2022. “Analisa Pengaruh Variasi Layout Shear Wall Terhadap Kinerja Struktur Dengan Metode Pushover Analysis Pada Gedung Pelindo Office Tower.” Rekayasa Teknik Sipil 10 (2).

Nofri, Nofri, and Rini Mulyani. 2026. “Analisis Kinerja Struktur Bangunan Bertingkat Terhadap Beban Gempa Menggunakan Metode Pushover.” Universitas Bung Hatta.

Nuranita, Badriana, Erma Desimaliana, and Novian Arief Subagja Sobana. 2022. “Analisis Pushover Terhadap Variasi Penampang Kolom Pada Struktur Gedung Special Plate Shear Wall.” Journal of Sustainable Construction 1 (2): 1–9. https://doi.org/10.26593/josc.v1i2.5699.

Rinaldi, Ryan, and Ellyza Chairani. 2017. “Pengaruh Gaya Gempa Terhadap Struktur Bertingkat Di Medan Berdasarkan SNI 03-1726-2002 Dan SNI 03-1726-2012 Menggunakan ETABS.” Universitas Harapan Medan. https://repositori.unhar.ac.id/handle/1529/pengaruh-gaya-gempa-terhadap-struktur-gedung-bertingkat-di-medan-berdasarkan-sni-03-1726-2002-dan-sni-03-1726-2012-menggunakan-etabs%0A.

Rumbyarso, Yonas Prima Arga. 2024. Kinerja Struktur Gedung Office 36 Lantai: Analisis History Dan Pushover. 1st ed. Amerta Media.

Siregar, Yeni Saima. 2026. “Evaluasi Kinerja Struktur Gedung Pusat Kegiatan Mahasiswa Yang Mengalami Penambahan Material Green Bulding Terhadap Beban Gempa Dengan Metode Pushover (Studi Kasus: Gedung Pkm Universitas Malikussaleh).” Universitas Malikussaleh.

Sungkana, Kennard Evan, Andy Prabowo, and Daniel Christianto. 2025. “EVALUASI KINERJA STRUKTUR BANGUNAN GEDUNG PERKANTORAN 7 LANTAI DENGAN ANALISIS PUSHOVER.” JMTS: Jurnal Mitra Teknik Sipil, April, 587–600. https://doi.org/10.24912/jmts.v8i2.32771.

Takesan, Jendrianus Hendro, Partogi H Simatupang, and Wilhelmus Bunganaen. 2021. “Studi Pengaruh Tangga Pada Pemodelan Struktur Bangunan Beraturan Akibat Beban Gempa Dengan Menggunakan Software Etabs.” JURNAL FORUM TEKNIK SIPIL (J-ForTekS) 1 (2): 48–59. https://doi.org/10.35508/forteks.v1i2.4886.

Tavio, and Benny Kusuma. 2018. Desain Rekayasa Gempa Berbasis Kinerja. Yogyakarta: Andi.

Zebua, Alfian Wiranata. 2018. “ANALISIS GAYA GEMPA BANGUNAN RUMAH TINGGAL DI WILAYAH GEMPA TINGGI.” SIKLUS: Jurnal Teknik Sipil 4 (1): 23–35. https://doi.org/10.31849/siklus.v4i1.1128.

Published

2026-09-19

How to Cite

Setiawan, W., & Auliah, A. (2026). Effect of Building Height on Seismic Base Shear: An ETABS-Based Analysis. Local Engineering, 4(2), 71–76. https://doi.org/10.59810/lejlace.v4i2.255

Issue

Section

Articles-Civil Engineering

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