MODELING OF GROUNDWATER LEVEL CHANGES DUE TO DEEP WELL EXTRACTION USING MODFLOW IN THE NORTH OF BANDAR LAMPUNG

Q4 Earth and Planetary Sciences
Ofik Taupik Purwadi, I. Darmawan, S. B. Yuwono, S. Triyono, D. Kusumastuti
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Abstract

The growth rate of urban areas in the north of Bandar Lampung has caused the extraction of groundwater resources through deep well pumping to increase. Therefore, it is necessary to study the impact of pumping to prevent groundwater depletion. This study performs numerical simulation modeling to identify the impact of deep well pumping on changes in groundwater levels in three sub-districts north of Bandar Lampung city. Modeling is done using MODFLOW-6 and ModelMuse as a graphical user interface (GUI). The simulation method uses steady-state and transient models with four stress periods in 2000, 2010, 2020, and 2030. A total of 30 data wells are used for model setup, and 15 of them as observation and validation points. The simulation results show that hydraulic head changes occur at depths of 10 m to more than 40 m. Drawdown and groundwater head changes are concentrated at deep well points with a radius of up to 1 km. The model also successfully identified a decrease in groundwater level to more than 8 m in the deepest well area DW1. Thus, it is necessary to take action that can overcome the impact of changes in groundwater level due to pumping from deep wells. Furthermore, groundwater storage engineering can be one solution by utilizing rainwater harvesting technology to recharge the groundwater aquifer system.
利用modflow模拟bandar lampung北部深井开采引起的地下水位变化
班达尔楠榜北部城市地区的增长率导致通过深井抽水开采地下水资源的数量增加。因此,有必要研究抽水对防止地下水枯竭的影响。本研究进行了数值模拟建模,以确定深井抽水对班达尔-楠榜市北部三个分区地下水位变化的影响。建模使用MODFLOW-6和ModelMuse作为图形用户界面(GUI)。该模拟方法使用了2000年、2010年、2020年和2030年四个应力周期的稳态和瞬态模型。共有30个数据井用于模型设置,其中15个数据井作为观测点和验证点。模拟结果表明,水力水头变化发生在10米至40米以上的深度。下降和地下水水头变化集中在半径达1公里的深井点。该模型还成功地确定了最深井区DW1的地下水位下降至8米以上。因此,有必要采取行动,克服深井抽水引起的地下水位变化的影响。此外,地下水储存工程可以是利用雨水收集技术对地下水含水层系统进行补给的一种解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ASEAN Engineering Journal
ASEAN Engineering Journal Engineering-Engineering (all)
CiteScore
0.60
自引率
0.00%
发文量
75
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