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Estimating Pumping Rates and Identifying Potential Recharge Zones for Groundwater Management in Multi-Aquifers System

机译:估算多含水层系统中地下水管理的抽水率并确定潜在的补给区

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摘要

Agricultural, aquaculture, industrial and domestic activities have placed enormous demands for water, which sometimes results in the over-pumping and associated continually declining groundwater levels. This in turn has led to land subsidence and soil salination. Therefore, it's important to understand the local pumping activities or the pumping rates in order to implement appropriate water management. The distribution of pumping rates varies spatially and temporally due to the availability of surface water and seasonality. In addition, to have correct estimate of the pumping rates, both the hydrology and geology should be consider. SWAT and MODFLOW are employed and run separately to acquire certain hydrologic components such as the recharge, boundary flow and change of aquifer storage in multi-aquifers. The water balance method (WBM) is then adopted to estimate pumping rates with these components. To validate the proposed model the results of WBM and the official records are compared. Besides, in view of the serious land subsidence occurred, artificial recharge is regarded as an effective tool to alleviate and mitigate the subsidence. Nevertheless, the location of conducting artificial recharge needs to be identified first. The potential recharge zones are assessed based on the simulated recharge rates from SWAT and the spatial distribution of hydrological characteristics of the unconfined aquifer. Ultimately, an optimal recharge zone will be suggested. The proposed methodology is proved capable of estimating the pumping rates and locating the potential recharge zone.
机译:农业,水产养殖业,工业和家庭活动对水的需求量很大,有时会导致过度抽水和相关的地下水位持续下降。反过来,这导致了地面沉降和土壤盐碱化。因此,了解当地的抽水活动或抽水速率对于实施适当的水管理很重要。由于地表水的可获得性和季节性,抽水率的分布在空间和时间上变化。此外,要正确估计抽水率,应同时考虑水文和地质情况。使用SWAT和MODFLOW并分别运行以获取某些水文成分,例如补给,边界流和多含水层中含水层存储的变化。然后采用水平衡法(WBM)来估算这些组件的抽水率。为了验证所提出的模型,将WBM的结果和官方记录进行了比较。此外,鉴于严重的地面沉降,人工补给被认为是减轻和减轻地面沉降的有效工具。不过,首先需要确定进行人工充电的位置。根据SWAT的模拟补给率和无限制含水层水文特征的空间分布,评估了潜在补给区。最终,将建议一个最佳的充电区。实践证明,所提出的方法能够估计抽水速率并确定潜在的补给区。

著录项

  • 来源
    《Water Resources Management》 |2013年第9期|3293-3306|共14页
  • 作者单位

    Department of Bioenvironmcntal Systems Engineering, National Taiwan University, Taipei, Taiwan 106,Republic of China;

    Department of Bioenvironmcntal Systems Engineering, National Taiwan University, Taipei, Taiwan 106,Republic of China;

    Department of Bioenvironmcntal Systems Engineering, National Taiwan University, Taipei, Taiwan 106,Republic of China;

    Department of Bioenvironmcntal Systems Engineering, National Taiwan University, Taipei, Taiwan 106,Republic of China;

    Department of Bioenvironmcntal Systems Engineering, National Taiwan University, Taipei, Taiwan 106,Republic of China;

    Department of Bioenvironmcntal Systems Engineering, National Taiwan University, Taipei, Taiwan 106,Republic of China;

    Department of Bioenvironmcntal Systems Engineering, National Taiwan University, Taipei, Taiwan 106,Republic of China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SWAT; MODFLOW; Pumping rate; Potential recharge zones; Multi-aquifers;

    机译:扑打;MODFLOW;抽速;潜在的充电区;多含水层;

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