首页> 外文期刊>Environmental earth sciences >Vulnerability of groundwater systems with sea level rise in coastal aquifers, South Korea
【24h】

Vulnerability of groundwater systems with sea level rise in coastal aquifers, South Korea

机译:韩国沿海含水层中地下水系统随海平面上升的脆弱性

获取原文
获取原文并翻译 | 示例
           

摘要

Groundwater systems in coastal aquifers may be affected by sea level change as increased seawater intrusion occurs with sea level rise. Artificial pumping taking place at the same time will increase this impact. In order to estimate the vulnerability of groundwater systems with sea level rise within coastal aquifers in South Korea, long-term ground-water data were analyzed using basic statistics, trend analysis, and correlation analysis. Conductivity depth profiling was also periodically conducted. Groundwater levels increased in wells with relatively low groundwater elevations but decreased in wells with higher groundwater elevations. At the same time, conductivity variations were greater in wells located in reclaimed land areas, which vertical conductivity profiles indicated were more affected by sea level variations, but decreased on the mainland. Results of auto-correlation analysis showed a decreasing trend with cyclic variations and significant periodic patterns during dry seasons, indicating that groundwater levels were not affected by artificial factors and that those in reclaimed land areas were less affected by rainfall than on the mainland. These results coincided with those from cross-correlation analysis showing that groundwater level was affected by sea level variation during the dry season. Sea level changes, which may be related to climate change, as well as rainfall in South Korea can influence groundwater levels, and the groundwater system in reclaimed land areas may be more affected than on the mainland, especially under dry conditions.
机译:随着海平面上升,海水入侵增加,沿海含水层的地下水系统可能会受到海平面变化的影响。同时进行人工泵送将增加这种影响。为了估计韩国沿海含水层中地下水系统随海平面上升的脆弱性,使用基本统计,趋势分析和相关性分析对长期地下水数据进行了分析。还定期进行电导率深度剖析。在地下水位相对较低的井中,地下水位增加,而在地下水位较高的井中,地下水位下降。同时,在开垦土地上的油井中,电导率变化较大,垂直电导率曲线显示受海平面变化影响更大,但在大陆下降。自相关分析的结果显示,干旱季节的周期性变化和明显的周期性变化趋势呈下降趋势,这表明地下水位不受人为因素的影响,开垦后的土地受到降雨的影响要小于大陆。这些结果与互相关分析的结果吻合,后者表明地下水位在干旱季节受海平面变化的影响。海平面变化(可能与气候变化有关)以及韩国的降雨会影响地下水水位,开垦土地地区的地下水系统可能比大陆地区受到的影响更大,特别是在干旱条件下。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号