Topex卫星重力和DEM SRTM图像的集成,用于识别东爪哇普罗布林戈拉蒙甘火山复合体蒂里斯地热区的地下结构

S. H. Siombone, A. Susilo, S. Maryanto
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引用次数: 0

摘要

蒂里斯地区是一个有地热前景的地区。Tiris地区位于东爪哇省Probolinggo县的Tiris街道。本研究旨在利用Topex重力和DEM SRTM图像数据确定Tiris地热区的地下结构。所获得的Topex重力数据仍处于自由空气异常(FAA)形式,因此有必要进行布格和地形校正,以获得完整的布格异常。需要残余布格异常来研究浅层地下结构。该异常是通过使用移动平均法将残余异常和区域异常从完全布格异常中分离出来而获得的。研究区域的残余布格异常值范围为-0.5-2.9 mGal。在Lamongan火山(LV)和Tiris地热区(TGA)的主体中可以看到低残余布格异常。通过正向二维建模,对地下结构的研究主要集中在LV和TGA上。A-A’截面说明LV的亚表面,而B-B’截面说明TGA的亚表面。剖面A-A’建模结果表明,低异常的来源于第二层D2=1.24g/,深度为海平面以下4.0-0.6km,由于其密度较低,因此被怀疑为岩浆。横截面B-B’建模在海平面以下4.0至2.8公里的深度处第二层D2=2.03 g/处获得了低异常源,怀疑为侵入岩。DEM SRTM地图上45o和135o方位角的二维线理显示表明,TGA区域具有较高的线理密度,研究区地表地质结构的方向以西北-东南方向为主。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integration of Topex Satellite Gravity and DEM SRTM Imagery for Subsurface Structure Identification at Tiris Geothermal Area, Lamongan Volcano Complex, Probolinggo, East Java
Tiris area is one area that has geothermal prospects. Tiris area is located in the Tiris sub-district, Probolinggo regency, East Java. This study aims to identify the subsurface structure of the Tiris geothermal area using Topex gravity and DEM SRTM imagery data. The Topex gravity data obtained is still in Free Air Anomali (FAA) form, so it is necessary to make Bouguer and terrain corrections to get a complete Bouguer anomaly. A residual Bouguer anomaly is needed to study shallow subsurface structures. This anomaly is obtained by separating the residual and regional anomalies from the complete Bouguer anomaly using the moving average method. The study area has residual Bouguer anomaly values ranging from -0.5 to 2.9 mGal. The low residual Bouguer anomalies are seen in the body of the Lamongan volcano (LV) and the Tiris geothermal area (TGA). The study of subsurface structures is focused on the LV and the TGA through Forward 2D modeling. The A-A' cross-section illustrates the subsurface of LV, while the B-B' cross-section illustrates the subsurface of TGA. Cross-section A-A' modeling results show that the source of the low anomaly is in the second layer D2 = 1.24 g/  at a depth of 4.0 to 0.6 km below sea level and is suspected to be magma because it has a low density. Cross-section B-B' modeling obtained a low anomaly source at the second layer D2 = 2.03 g/  at a depth of 4.0 to 2.8 km below sea level and is suspected to be intrusive rock. The lineament display on the 2D of DEM SRTM map for the 45o and 135o azimuths shows that the TGA region has a high lineament density, and the orientation of the surface geological structure in the study area is dominant in a northwest-southeast direction.
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