Geological and Morphometric Characteristics of Quaternary Pyroclastic Aquifers in Salak and Pangrango Stratovolcano.

B. Nugraha, Mohammad Ghozi, Arif Fadillah, Azwar Satrya Muhammad, Teuku Yan Waliyana Muda Iskandarsyah, Nathalie Dörfliger, Valérie Plagnes, Hendarmawan Hendarmawan
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Abstract

Indonesia is located in a subduction zone formed by the collision of continental and oceanic plates. Many volcanoes form as a result of these conditions along the arc. Springs on the volcano's slopes are widely used for domestic, irrigation, and industry water use. Investigating the characteristics of aquifers and springs is essential to ensure groundwater sustainability by providing a robust geological framework. Meanwhile, groundwater in a volcanic geological setting has good quality characteristics because of its occurrence process, which interacts with many minerals in pyroclastic rocks that act as aquifers. The study area is located in the Lido Catchment Area (LCA), which is situated between two distinct volcanic slopes. Geological and morphometric analysis at LCA is the basis of important information relating to its hydrogeological systems. The analysis of thin rock sections and parameters of the physical properties of water in groundwater springs supports our research. We applied a comprehensive geological and morphometric analysis to obtain detailed information about the aquifer. This study aimed to determine the characteristics of aquifers in pyroclastic rocks and their relationship to the formation of springs. From the research conducted, the characteristic of water can be distinguished based on the geological conditions of its constituents. There are 6 different lithological characteristics in the study area: polymictic breccia, monomictic breccia, lapilli, lapilli tuff, coarse tuff, and fine tuff. From the lithology variations obtained, breccia, lapilli, and coarse tuff can play a good role as aquifers. Geological correlations and groundwater systems in the study area show groups of superficial, mixed, and alteration springs. The system of water flows in aquifers through inter-grains or rock fractures. The types of springs in LCA are dominated by depression and fracture types. These results are fundamental information for understanding hydrogeological systems in future volcanic geological settings.
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Salak和pangango层状火山第四纪火山碎屑含水层地质和形态特征
印度尼西亚位于大陆板块和大洋板块碰撞形成的俯冲带。许多火山都是在这些条件下形成的。火山斜坡上的泉水被广泛用于家庭、灌溉和工业用水。研究含水层和泉水的特征对于通过提供可靠的地质框架来确保地下水的可持续性至关重要。同时,火山地质环境下地下水的赋存过程与火山碎屑岩中的多种矿物相互作用,起到含水层的作用,具有良好的水质特征。研究区位于Lido集水区(LCA),位于两个不同的火山斜坡之间。LCA的地质和形态计量学分析是有关其水文地质系统的重要信息的基础。薄岩剖面和地下水泉水物理性质参数的分析支持了我们的研究。我们应用了全面的地质和形态计量学分析来获得有关含水层的详细信息。本研究旨在确定火山碎屑岩中含水层的特征及其与泉水形成的关系。从研究结果来看,可以根据水成分的地质条件来区分水的特征。研究区有6种不同的岩性特征:多晶角砾岩、单晶角砾岩、珍珠状、珍珠状凝灰岩、粗凝灰岩和细凝灰岩。从岩性变化来看,角砾岩、砾石和粗凝灰岩具有较好的含水层作用。研究区地质对比和地下水系统显示出浅层、混合和蚀变泉水群。水在含水层中通过颗粒间或岩石裂缝流动的系统。LCA的弹簧类型以凹陷型和断裂型为主。这些结果为了解未来火山地质背景下的水文地质系统提供了基础信息。
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审稿时长
16 weeks
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