Analysis of Groundwater Flow on Hydrogeological for Sustainable Development and Environment in the Ternate Basin, North Maluku Province, Indonesia

Kadri Daud
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Abstract

The sustainability of water and sanitation management is an important point in the 2021 SDGs program. To support the program, it is important to understand Indonesia's water cycle. Given the variety of characters, topography, and geology between islands in Indonesia can distinguish hydrogeological systems and their interactions with the surrounding environment. The design and management of water resources, especially groundwater, has an important role, considering the basin area is 106 km2, the character of a volcanic island with the name of an active volcano. Topography from 0-8% is a built-up zone, 8-14% is a cultivation zone, 14-45% is a protected forest, and >45% is a stratovolcano peak zone. Island morphology affects groundwater flow patterns. This study aimed to determine the characteristics of groundwater flow in the Ternate basin. Purposive sampling of 56 production wells, transmissivity value, conductivity, aquifer thickness, and topography was analyzed using the Cubic spline interpolation method. The results showed that the direction of flow and groundwater accumulation based on groundwater modeling using the kriging interpolation technique resulted in the interaction of groundwater flow and depression cones in 56 production wells due to the concentration and massive groundwater abstraction in the Ternate Basin. The decrease in groundwater level is fluctuating, from groundwater flows that occur radially-centrifugally, the total reserves of 56 production wells are 46 million m3/day, the average transmissivity value is 2.17 m2/day, production discharge is 51,710 m3/day.
印度尼西亚北马鲁古省Ternate盆地地下水流量的水文地质可持续发展与环境分析
水和卫生管理的可持续性是2021年可持续发展目标计划的一个重要方面。为了支持该项目,了解印尼的水循环非常重要。考虑到印度尼西亚岛屿之间的各种特征、地形和地质,可以区分水文地质系统及其与周围环境的相互作用。考虑到流域面积为106平方公里,具有活火山名称的火山岛的特征,水资源,特别是地下水的设计和管理具有重要作用。0-8%的地形为建成区,8-14%为种植区,14-45%为保护林,>45%为层火山峰区。岛屿形态影响地下水流动模式。本研究旨在确定Ternate盆地的地下水流动特征。采用三次样条插值方法对56口生产井的目的采样、透射率、电导率、含水层厚度和地形进行了分析。结果表明,由于特尔纳特盆地地下水的集中和大量抽取,基于克里格插值技术地下水建模的水流方向和地下水聚集导致了56口生产井的地下水流动和凹陷锥的相互作用。地下水位的下降是波动的,从径向离心发生的地下水流来看,56口生产井的总储量为4600万m3/天,平均透射率值为2.17 m2/天,生产流量为51710 m3/天。
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