地下水资源优化配置下百泉泉地区地下水动态条件模拟

IF 4.3 Q2 Environmental Science
Kaidi Yan, Demin Liu
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引用次数: 0

摘要

邢台,这个历史上曾经以泉水群而闻名的城市,由于地下水资源的长期过度开采,已经成为全国水资源需求高的地区之一。在该地区的泉水已经干涸并被切断的地区,包括百泉和大火。为了合理调配南水北调中段引水量,有效地使泉水回涌,恢复地下水位,本研究基于研究区水文地质条件建立了地下水数值模型。利用计算模型对不同补引方案配置下的水动力形态变化进行了讨论,并对弹簧群流量进行了定量预测。研究发现,利用引水量对邢台城市漏斗进行修复的方案最有利于泉水群地下水位的恢复,这是由于减少了地下水开采量,缩小了城市漏斗的影响范围,改善了北部优先径流带的水动力条件。结果表明,对弹簧组进行重冲是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of groundwater dynamic conditions in the Baiquan spring region under optimal groundwater resource allocation
Xingtai, once a famous city for its spring groups in history, has become one of the regions in the country where water resources are in high demand due to the long-term over-exploitation of groundwater resources. In the region where the springs in the area have dried up and been cutting off over the years, including Baiquan and Dahuo. In order to allocate the amount of water diverted from the Middle Section of the South-North Water Diversion Project reasonably, to effectively make the springs re-rushing and restore the groundwater level, this research established a numerical groundwater model based on the hydrogeological conditions of the study area. The calculated model is used to discuss the hydrodynamical patterns changes and predict the flow rate of spring groups under different allocations of supplement diversion schemes quantifiably. It was found that the scheme of using the amount of river diversion to rehabilitate the Xingtai urban funnel was most conducive to the recovery of groundwater levels in the spring groups, which is due to the reduction in groundwater extraction and has reduced the influence range of the urban funnel and improved the hydrodynamic conditions in the northern preferential runoff zone. The results have demonstrated the feasibility of re-rushing the spring groups.
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来源期刊
CiteScore
4.70
自引率
0.00%
发文量
74
审稿时长
4.5 months
期刊介绍: Journal of Water Supply: Research and Technology - Aqua publishes peer-reviewed scientific & technical, review, and practical/ operational papers dealing with research and development in water supply technology and management, including economics, training and public relations on a national and international level.
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