Community Technical Support for Rebuilding After Cianjur Landslides Due to Earthquake 2022

Authors

  • Lolom Evalita Hutabarat Universitas Kristen Indonesia (UKI)
  • Pinondang Simanjuntak Civil Engineering Dept. Universitas Kristen Indonesia (UKI)
  • Efendy Tambunan Civil Engineering Dept. Universitas Kristen Indonesia (UKI)
  • Candra Christianti Civil Engineering Dept. Universitas Kristen Indonesia (UKI)

Keywords:

community mitigation, Cugenang fault, landslide-prone locations

Abstract

The occurrence of earthquake disasters in Indonesia, attributed to its location within the Ring of Fire, consistently leads to human and material losses for the residents residing in the impacted areas. The seismic event on November 21, 2022, at Cianjur, resulted from tectonic activity along the Cugenang Cianjur fault and subsequent landslides near Sarampad Village, the horseshoe-shaped region. The seismic activity associated with an earthquake can induce landslides, amplifying their destructive potential and posing a severe threat to slopes already susceptible to instability. Still, landslides can occur for various reasons depending on the local soil and weather. Subsequently, a data collection process was undertaken to allocate governmental aid to the community to reconstruct their residences. The Cugenang fault area is characterized by its topographical features, including mountain slopes, hillsides, and river cliffs or valleys. Specifically, areas with slopes over 40% are classified as zone A. The identification of landslide-prone locations is conducted following established protocols such as Landslide Management Planning Procedures SNI 03-1962-1990, Field Engineering Geological Mapping Procedures SNI 03-2849-1992, and Procedures for Making Slope Maps SNI 03-3977-1995. If necessary, community mitigation actions can be implemented after identifying landslide danger or regions at risk. In the event of a landslide, communities employ several methods, including preparation, engineering, acceptance, and monitoring and warning systems. Planning control reduces risk; an engineering solution strategy reduces landslide probability or impact. Acceptance strategy accepts or unavoidable, and monitoring and warning system strategy reduces risk by evacuating before failure

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References

BMKG, "Shakemap Repository.," Retrieved from http://shakemap.bmkg.go.id/, 2022.

R. Hall, "Cenozoic Geological and Plate Tectonic Evolution of SE Asia and The SW Pacific: Computer-Based Reconstructions, Model and Animations," J. Asian Earth Sci., vol. 20, no. 4, pp. 353–431, 2002, doi: 10.1016/S1367-9120(01)00069-4.

L. E. Hutabarat, “Tinjauan Geologis Gempa Cianjur November 2022,” J. Rekayasa Tek. Sipil dan Lingkungan, Progr. Stud. Sipil, Univ. Kristen Indones. Jakarta, vol. 4, no. 1, pp. 46–53, 2022.

M. Irsyam et al., Peta Sumber Dan Bahaya Gempa Indonesia Tahun 2017. 2017. [Online]. Available: http://litbang.pu.go.id/puskim/berita/detail/1355/peta-sumber-dan-bahaya-gempa-indonesia-tahun-2017

K.R. Newcomb and W. R. McCann, "Seismic History And Seismotectonics Of The Sunda Arc," J. Geophys. Res., vol. 92, no. B1, pp. 421–439, 1987.

E. Kertapati, “Aktivitas Gempa Bumi di Indonesia: Perspektif Regional pada Gempa Bumi merusak.,” 2006.

D. H. Natawidjaja, Sesar Aktif Indonesia Dan Peranannya Dalam Mitigasi Bencana Gempa Dan Tsunami. 2021.

W. R. Newcomb, K. R., & McCann, "Seismic History and Seismotectonics of The Sunda Arc.," J. Geophys. Res. Solid Earth, 9, vol. 2, no. B1, pp. 421-439., 1987.

P. Supendi, J. Jatnika, D. Sianipar, and Y. H. Ali, “Analisis Gempabumi Cianjur ( Jawa Barat ) Mw 5 . 6 Tanggal 21 November 2022,” Kelompok Kerja Sesar Aktif dan Katalog Gempabumi Badan Meteorol. Klimatologi, dan Geofis., no. November, pp. 13–16, 2022.

ESDM, “Pengenalan Gerakan Tanah,” in Vulcanological Survey of Indonesia (VSI) Kementerian Energi dan Sumber daya Mineral, 2005.

W. Irawan, "Landslide in Indonesia, Case Study: Malausma Landslide in Majalengka Region, West Java," Proc. Themat. Sess. 49th CCOP Annu. Sess. 22-23 Oct. 2013, Sendai, Japan, pp. 205–209, 2013.

Supartoyo, Surono, and E. Putranto, “Katalog Gempabumi Merusak di Indonesia Tahun 1612-2014,” Pus. Vulkanol. dan Mitigasi Bencana Geol. Kementeri. Energi dan Sumber Daya Miner., vol. 2014, no. 57, p. 151, 2014.

L. M. Highland and P. Bobrowsky, "Mitigation Concepts and Approaches," in The Landslide Handbook - A Guide to Understanding Landslides, Section III, 2008, pp. 57–69. doi: 10.1017/cbo9781139151979.005.

M. W. Agung, "Engineering geological investigation and landslides hazard zonation of Mount Batur Geopark, Bali, Indonesia Muhammad Wafid Agung," Proc. Themat. Sess. 49th CCOP Annu. Sess. 22-23 Oct. 2013, Sendai, Japan, pp. 197–203, 2013.

N. T. Long, L. M. Son, N. D. Ha, N. Q. Dinh, and D. M. Hien, "Using the weight of evidence modeling for landslide susceptibility zonation mapping in Pac Nam district, Bac Kan province, Vietnam Nguyen Thanh Long, Le Minh Son, Nguyen Duc Ha, Nguyen Quoc Dinh, Do Minh Hien," Proc. Themat. Sess. 49th CCOP Annu. Sess. 22-23 Oct. 2013, Sendai, Japan, pp. 183–196, 2013.

D. Prasetyo et al., “Pemetaan Wilayah Rawan Bencana Alam,” J. Digit ISSN 2088-589X, vol. 12, no. 2, pp. 123–132, 2022.

T. Winarsih, “Asesmen Kekuatan Struktur Bangunan Gedung, Studi Kasus Gedung Bangunan Gawat Darurat Rumah Sakit Umum Daerah,” 2010.

S. Samsunan, “Evaluasi Kerusakan Akibat Gempa Pada Bangunan Gedung Bank Aceh Cabang Sigli,” J. Tek. Sipil dan Teknol. Konstr., vol. 2, no. 2, pp. 79–80, 2018, doi: 10.35308/jts-utu.v2i2.377.

A. S. Ariyanto, “Analisis Jenis Kerusakan Pada Bangunan Gedung Bertingkat (Studi Kasus pada Gedung Apartemen dan Hotel Candiland Semarang),” Bangun Rekaprima, vol. 06, no. 1, pp. 45–57, 2020, [Online]. Available: file:///C:/Users/user/Downloads/1929-108084-1-SM (1).pdf

H. Khoeri, “Pemilihan Metode Perbaikan Dan Perkuatan Struktur Akibat Gempa (Studi Kasus Pada Bank Sulteng Palu),” J. Konstr., pp. 93–104, 2018.

E. P. A. Yahya and F. A. B. Pradipta, “Asesmen dan Analisa Gedung Eksisting (Studi Kasus Bangunan Johar Shopping Center Semarang) (),” 2022.

A. Masdar, Z. N. Wati, U. Khatab, and A. D. Masdar, “Asesmen Gedung Serba Guna Sekolah Tinggi Teknologi Payakumbuh ( Assessment of the Multipurpose Building of Sekolah Tinggi Teknologi Payakumbuh ),” J. Civ. Eng. Plan. J., vol. 4, pp. 72–81, 2023, doi: 10.37253/jcep.v4i1.7825.

T. Zhafira, T. Widorini, and N. H. Crista, “Evaluasi Bangunan Struktur Sekolah Terhadap Kerentanan Gempa Dengan Asesmen Cepat,” J. Tek. Sipil Ranc. Bangun, vol. 09, no. 01, pp. 33–39, 2023.

Adit, B. Novianto, G. Agung, M. Andreti, N. Ifadianto, and Tommy Chandra, “Pedoman Membangun Rumah Sederhana Tahan Gempa,” 2006.

SNI 03-1962, “Tata Cara Perencanaan Penanggulangan Longsoran,” Badan Stand. Nasional, i-8, 67 hal. ilus.; 28 C., 1990.

SNI 03-2849, “Tata Cara Pemetaan Geologi Teknik Lapangan,” Badan Stand. Nasional, 29 hal. ilus.; 28 C., 1992.

SNI 03-3977, “Tata Cara Pembuatan Peta Kemiringan Lereng Menggunakan Rumus Horton,” Dewan Stand. Nas., 1995.

PU No.22, “Pedoman Penataan Ruang Kawasan Rawan Bencana,” Dinas Pekerj. Umum, Direktorat Jenderal Penataan Ruang, vol. 53, no. 9, pp. 1689–1699, 2007.

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Published

2024-07-22

How to Cite

[1]
L. E. Hutabarat, P. Simanjuntak, E. . Tambunan, and C. Christianti, “Community Technical Support for Rebuilding After Cianjur Landslides Due to Earthquake 2022”, j-dinamika, vol. 9, no. 2, Jul. 2024.

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