Tracing Baribis active fault continuity in the Subang region using gravity edge detection analysis

Author:

Hanif M,Handayani L,Gaol K L,Aulia A N,Arisbaya I,Wardhana D D

Abstract

Abstract Elucidating the Baribis active fault in the central part of West Java is challenging due to the lack of physiography appearance. A gravity survey was conducted on 838 stations around the North of Bandung to Subang region to identify its buried spatial fault continuity. Regular processing routine reduced the observed gravity acceleration to generate the refined Bouguer anomaly map. Additionally, edge detection techniques (e.g., tilt derivative and analytic signal) were analyzed to delineate the proven fault emergence from the published active fault database and surface geological map. The results depict that the Baribis fault was continued to the Subang region and enhanced clearly by applying analytic signal attributes. Thereby, the Baribis fault continuity is better interpreted on the analytic signal anomaly map, whereas the tilt derivative technique explains the factor of unclear surficial discontinuity of Baribis fault on the zone.

Publisher

IOP Publishing

Subject

General Engineering

Reference17 articles.

1. Development of spectral hazard maps for a proposed revision of the Indonesian Seismic Building Code;Irsyam;Geomech. Geoengin.,2010

2. Identification of active faults in West Java, Indonesia, based on earthquake hypocenter determination, relocation, and focal mechanism analysis;Supendi;Geosci. Lett.,2018

3. The kinematics of crustal deformation in Java from GPS observations : Implications for fault slip partitioning;Koulali;Earth Planet. Sci. Lett.,2016

4. Crustal deformation studies in java (Indonesia) using GPS;Abidin;J. Earthq. Tsunami,2009

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. 2D and 3D Subsurface Geological Model of Baribis Fault Zone Using the Gravity Method;Springer Proceedings in Physics;2022

2. Comparative study of edge enhancement techniques of the Java arc gravity anomalies;THE INTERNATIONAL CONFERENCE ON ADVANCED MATERIAL AND TECHNOLOGY (ICAMT) 2021;2022

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