Seismicity Analysis and Velocity Structure of Two-phase Geothermal Field in Southern Bandung

Muhamad Firdaus Al Hakim
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Abstract

Over a duration of six months, we conducted a microearthquake analysis to characterize the subsurface conditions in the two-phase geothermal field located in Southern Bandung. Throughout the study, a total of 754 microearthquake (MEQ) data were recorded from at least 15 monitoring stations. After selection process of the dataset, 362 events were selected based on their azimuthal gap angle being less than 180°. Initially, the earthquake locations were determined using the Geiger method. Subsequently, we updated the hypocenter locations through simultaneous inversion, incorporating 1D velocity structure and 3D tomographic inversion. Our analysis revealed three primary seismicity clusters, which likely correspond to the injection and production activities within the geothermal field. The southern cluster aligns with the injection wells, extending from a depth of 1 km to 8 km, suggesting that the MEQ events were induced by injection activity. In the production area, a higher concentration of events is observed, densely distributed between depths of 1 km and 3 km. We suspect that the third cluster is associated with the development activity of a steam-dominated geothermal field located east of the main field. Notably, low Vp/Vs values near the surface are detected and exhibit increased thickness towards the north. These characteristics are interpreted as indicative of the steam zone, as the anomaly's location aligns closely with the production area. The thickening of the low Vp/Vs zone towards the north suggests the presence of steam as the impact of fluid extraction in the region, leading to a decline in pressure.
万隆南部两相地热田地震活动性分析及速度结构
在六个月的时间里,我们进行了微地震分析,以表征位于万隆南部的两相地热田的地下条件。在整个研究过程中,至少15个监测站共记录了754次微震(MEQ)数据。经过数据集的选取过程,选取了362个方位间隙角小于180°的事件。最初,地震的位置是用盖革方法确定的。随后,我们结合一维速度结构和三维层析反演,通过同步反演更新了震源位置。我们的分析揭示了三个主要的地震活动簇,它们可能对应于地热田内的注入和生产活动。南部簇与注入井对齐,深度从1公里延伸到8公里,表明MEQ事件是由注入活动引起的。在产震区,观测到的事件集中度较高,密集分布在1公里至3公里的深度之间。我们怀疑第三组与位于主田以东的蒸汽主导型地热田的开发活动有关。值得注意的是,在地表附近检测到低Vp/Vs值,并向北显示厚度增加。这些特征被解释为蒸汽带的指示,因为异常的位置与生产区域密切相关。低Vp/Vs区向北变厚表明该区域流体抽提对蒸汽的影响,导致压力下降。
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