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Investigation of geological structure over caldera hosted geothermal system using geological study and remote sensing analysis

机译:利用地质研究和遥感分析调查卡尔德达托管地热系统的地质结构

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The Blawan-Ijen volcanic complex is located in the easternmost of Java Modern Volcanic Arc, overlying the Kendeng Basin. It is characterized as caldera hosted geothermal system. The presence of geothermal system in this area is indicated by a few thermal manifestations such as fumarole, hot springs, and hydrothermal alteration. Tectonically, the area is located in the margin of Java Block and Sumba Block. Thus, they trigger a sinistral shear deformation due to the movement velocity difference. Structural studies are performed to get understanding of the geothermal system by utilizing remote sensing analysis and field observation. The studies use ASTER Global Digital Elevation Model to observe the geological structure by evaluating the morphological manifestation in this area. Furthermore, this tentative structure is validated with field evidence obtained from field observation. The observation also gives additional information about the structural kinematics that can be used to recognize the structure characteristic related to geothermal system. Four groups of structural lineaments are identified from remote sensing analysis: N-S trend, NW-SE trend, E-W trend, NE-SW trend, and circular caldera structure. These structures are indicated by the alignment of valleys and volcanoes around the caldera. In the northern area, the shape of caldera structure is clearly identified from remote sensing analysis. While in the southern area, it is not clearly noticeable because it is covered by younger volcanic product such as Mt Pendil, Mt Rante, Mt Genteng and the other products. All the hotsprings located in the northern area are classified as an outflow by its chemical composition. The outflow zone follows the N-S fault, indicating that the recent geothermal activity is controlled by the tectonic structure. Whereas, an upflow zone is probably located in the southern area. It is supported by the fact that numerous young volcanics are emerged in the southern caldera which shows the high thermal activity in this area. Moreover, the caldera structure is not directly correlated to the presence of Blawan hotspring. The structure might be acts as a path for natural recharge and young volcanic formations.
机译:Blawan-Ijen火山复合体位于Java现代火山弧的东部,覆盖了Kendeng盆地。它的特点是火山口托管地热系统。该区域中的地热系统的存在是由诸如富马,温泉和水热改变的少数热表现形式。细胞不地说,该区域位于Java块和Sumba块的边缘。因此,由于移动速度差,它们引发了叉轴剪切变形。通过利用遥感分析和现场观察,进行结构研究以了解地热系统的理解。研究用艾斯特全球数字仰卧模型通过评估该地区的形态表现来观察地质结构。此外,该暂定结构验证了从现场观察获得的现场证据。观察还提供了有关结构运动学的额外信息,可用于识别与地热系统相关的结构特征。从遥感分析中确定了四组结构谱系:N-S趋势,NW-SE趋势,E-W趋势,NE-SW趋势和圆形火山口结构。这些结构由谷谷和火山周围的调整来表示。在北部地区,清楚地识别了火山树结构的形状从遥感分析中明确识别。在南部地区,它没有明显明显,因为它被更年轻的火山产品如MT Pendil,Mt Rante,Mt Benteng和其他产品所覆盖。位于北部地区的所有温泉被其化学成分所分类为流出。流出区域遵循N-S故障,表明最近的地热活动由构造结构控制。虽然,上流区可能位于南部地区。它得到了许多年轻的火山岩在南卡尔德州出现的事实,这表明了该地区的高热活动。此外,火山口结构与Blawan Hotspring的存在并不直接相关。该结构可能是自然充电和年轻火山地层的路径。

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