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Imaging structural control of geothermal reservoir using remote sensing and gravity data analysis in Blawan-Ijen, East Java, Indonesia

机译:使用遥感和重力数据分析的地热储层的成像结构控制,在印度尼西亚布莱恩 - Ijen,东爪哇省

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Ijen Volcanic Complex is part of the Quartenary volcanic front of the Sunda Arc. The arc is a subduction system as a result of the northward subduction of the Indo-Australian plate underneath the Eurasian plate. This paper presents remote sensing data analysis and gravity data interpretation to understand the geological structure and its correlation to the geothermal system. The remote sensing analysis is performed using morphostructure approach. Furthermore, the gravity survey also had been carried out in the Ijen Volcanic Complex in 2017. A total of 72 gravity stations were measured with station spacing about 1-1.5 km. The gravity anomaly was then separated into regional and residual anomaly using the first order of TSA method. A high bouguer anomaly found in the southwest area and then continued to the northeast area. The high bouguer anomaly in the southwest area is might be associated with the existence of several volcanoes such as Mt. Mlaten, Mt. Lingker, Mt. Anyar, and Mt. Pendil. Futhermore, the low bouguer anomaly that is seen in the southeast area is probably caused by the collapse of the Mt. Kukusan. Moreover, a high residual gravity anomaly in the center of the caldera is coincided with the geological structure intersection of Kawahwurung fault, Blawan fault and Kendeng-Merapi fault.
机译:Ijen火山复合体是Sunda Arc的Quartearary火山前的一部分。由于欧亚板块下面的印度澳大利亚板材的向北俯冲,弧是一种俯冲系统。本文介绍了遥感数据分析和重力数据解释,以了解地质结构及其与地热系统的相关性。使用Morphostructure方法进行遥感分析。此外,2017年IJEN火山复合体还在Ijen火山复合体中进行了重力调查。使用大约1-1.5公里的站点测量了72个重力站。然后使用TSA方法的第一阶分离成重力异常分离成区域和残留异常。在西南地区发现的高Bouguer异常,然后继续到东北地区。西南地区的高Bouguer异常可能与几座火山的存在有关,例如Mt.Mlaten,Mt.Lingker,Mt.Anyar和Mt.Pendil。在东南部地区看到的低Bouguer异常的低手莫尔可能是由Mt.Kukusan的崩溃引起的。此外,卡尔德拉中心的高剩余重力异常与川隆断层,蓝兰断层和KENDENG-MERAPI故障的地质结构交叉吻合。

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