Surface Deformation Monitoring Using Time-lapse Microgravity Method in Central and East Lombok Regencies

Main Article Content

Suhayat Minardi
Teguh Ardianto
Alfina Taurida Alaydrus

Abstract

Surface deformation is a natural occurrence on the surface of the earth. The deformation can be in the form of subsidence or uplifting of the land surface. In this research, an time-lapse microgravity method will be applied to monitor surface deformation that occurs in Central Lombok and East Lombok Districts. The method of time-lapse microgravity is repetitive gravity measurement at the same point with a certain time interval, the measured magnitude is a change in the value of the acceleration of gravity and the microGal scale. Measurements were made in August 2016, April 2018, and June 2019. The measured value of the change in gravitational acceleration is the superposition of the changes caused by subsurface and surface sources. Separation of the two values is carried out using striping filter, which takes into account the ratio of density, thickness, and depth of the surface and subsurface layers. Land subsidence occurred during the period August 2016 to April 2018 and land uplifting occurred during the April 2018 to June 2019 period. This land subsidence occurred due to natural compacting and minor tectonic activity (small earthquakes that were not felt) while land uplifting was occurred due to major tectonic activities, in the form of the Lombok Earthquake in July to September 2018.

Downloads

Download data is not yet available.

Article Details

How to Cite
Minardi, S., Ardianto, T., & Alaydrus, A. (2020). Surface Deformation Monitoring Using Time-lapse Microgravity Method in Central and East Lombok Regencies. Indonesian Journal of Physics, 31(2), 16 - 23. https://doi.org/10.5614/itb.ijp.2020.31.2.3
Section
Articles

References

[1] J.A. Katili, Review of Past and Present geotectonic concept of eastern Indonesia, Netherland Journal Sea. Res. 24(2/3), pp. 103 – 129, 1989.
[2] Hamilton, Warren., 1979, Tectonics of the Indonesian region, USGS Professional Paper, 1078.
[3] Kertapati E., Aktivitas Gempabumi di Indonesia (Perspektif Regional pada Karakteristik Gempabumi Merusak), Pusat Survey Badan Geologi, Bandung, 2006.
[4] S. Minardi, T. Ardianto, A.T. Alaydrus, Deteksi Aktivitas Sesar Lombok Berdasarkan Data Anomali Gayaberat Mikro Antar Waktu Dan Geodetik, Proceedings of Seminar Kontribusi Fisika, (Dec. 5, 2018, Depertemen Fisika ITB, Bandung, Indonesia) 2019,
http://portal.fmipa.itb.ac.id/skf2018/kfz/proceedings/6.
[5] W.G.A Kadir, Prosiding PIT HAGI, 1999.
[6] D. Dahrin, Sarkowi, W.G.A. Kadir, S. Minardi, Penurunan Volume Airtanah Daerah Semarang berdasarkan Pemodelan 3D Gayaberat Antar
Waktu, Jurnal Geoaplika, 2 (1), pp. 11 – 17, 2007.
[7] S. Hammer, Geophysics, 28, pp. 369-378, 1963.
[8] L. Cordell, 55th Annual International Meeting, SEG, Expanded Abstracts, pp : 217-218, 1985.
[9] Aina, Adebayo, Geophysics, 59, pp. 488-490, 1994.
[10] Y. Li, and D.W. Oldenburg, Geophysics, 63, pp. 431-439, 1998.
[11] https://www.google.co.id/maps/@-8.6071255,116.071663,10z?hl=en&authuser=0, downloaded in December 16th, 2018 at 5:12 PM
[12] https://www.geomatrix.co.uk/land-products/gravity/scintrex-cg5, downloaded in December 16th, 2018 at 5:20 PM