Magnetotellurics (MT) and Gravity Study of a Possible Active Fault in Southern Garut, West Java, Indonesia

Author:

Arisbaya Ilham12ORCID,Wijanarko Edy13,Warsa 1ORCID,Sumintadireja Prihadi4ORCID,Sudrajat Yayat2,Handayani Lina2ORCID,Mukti M. Ma'ruf5ORCID,Grandis Hendra1ORCID

Affiliation:

1. Faculty of Mining and Petroleum Engineering, Institut Teknologi Bandung (ITB), Bandung, Indonesia

2. Research Center for Geological Disaster, National Research and Innovation Agency (BRIN), Bandung, Indonesia

3. Centre for Oil and Gas Technology (LEMIGAS), Jakarta, Indonesia

4. Faculty of Earth Science and Technology, Institut Teknologi Bandung (ITB), Bandung, Indonesia

5. Research Center for Geological Resources, National Research and Innovation Agency (BRIN), Bandung, Indonesia

Abstract

In recent years, dozen low-intensity earthquakes occurred in southern Garut, West Java Indonesia; two of them were reported destructive. However, those shallow earthquake clusters are hardly associated with well-known active faults in the area. Hence, we conducted 3D gravity combined with 2D magnetotellurics (MT) inversions to study the subsurface. Gravity and MT modeling confirm a basin with around 5 km depth consisting of two subbasins separated by a NE-SW trending local-high ridge. The local high coincides with the magmatic intrusion in geothermal fields and aligns with a series of volcanic bodies’ lineament observed on the surface. We interpret this structural high as a preexisting fault that serves as a magma pathway in the tectonomagmatic interaction. Shallow low-magnitude seismicity in the southern Garut area tends to occur in the resistive bodies. We interpret that heat from the cooling magmatic intrusion may decrease the effective fault-normal stress of the rocks, leading to a decrease in fault failure resistance and may initiate rupture. The resistivity structure around the initial rupture may affect whether or not the nucleation will end up as a large-magnitude earthquake. Furthermore, the unconsolidated young volcanic cover in this area could amplify ground shaking when earthquake occurs that might lead to more extensive damage.

Funder

National Research and Innovation Agency of Indonesia

Publisher

Hindawi Limited

Subject

Geophysics,Water Science and Technology

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