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2004 年海啸对斯里兰卡沿海含水层的影响。

The effects of the 2004 tsunami on a coastal aquifer in Sri Lanka.

机构信息

Department of Geography andGeology, University of Copenhagen, Denmark.

出版信息

Ground Water. 2012 Sep-Oct;50(5):704-14. doi: 10.1111/j.1745-6584.2011.00893.x. Epub 2011 Dec 15.

Abstract

On December 26, 2004, the earthquake off the southern coast of Sumatra in the Indian Ocean generated far-reaching tsunami waves, resulting in severe disruption of the coastal aquifers in many countries of the region. The objective of this study was to examine the impact of the tsunami on groundwater in coastal areas. Field investigations on the east coast of Sri Lanka were carried out along a transect located perpendicular to the coastline on a 2.4 km wide sand stretch bounded by the sea and a lagoon. Measurements of groundwater table elevation and electrical conductivity (EC) of the groundwater were carried out monthly from October 2005 to August 2007. The aquifer system and tsunami saltwater intrusion were modeled using the variable-density flow and solute transport code HST3D to understand the tsunami plume behavior and estimate the aquifer recovery time. EC values reduced as a result of the monsoonal rainfall following the tsunami with a decline in reduction rate during the dry season. The upper part of the saturated zone (down to 2.5 m) returned to freshwater conditions (EC < 1000 µS/cm) 1 to 1.5 years after the tsunami, according to field observations. On the basis of model simulations, it may take more than 15 years for the entire aquifer (down to 28 m) to recover completely, although the top 6 m of the aquifer may become fresh in about 5 years.

摘要

2004 年 12 月 26 日,印度洋苏门答腊南部沿海地震引发了影响深远的海啸波,导致该地区许多国家的沿海含水层受到严重干扰。本研究的目的是研究海啸对沿海地下水的影响。在斯里兰卡东海岸进行了实地调查,沿着一条与海岸线垂直的横断面进行,该横断面位于海和泻湖之间的 2.4 公里宽的沙带内。从 2005 年 10 月到 2007 年 8 月,每月测量地下水水位和地下水电导率 (EC)。使用变密度流动和溶质运移代码 HST3D 对含水层系统和海啸盐水入侵进行建模,以了解海啸羽流的行为并估计含水层的恢复时间。海啸后的季风降雨导致 EC 值降低,旱季的降低率降低。根据现场观测,海啸后 1 至 1.5 年,饱和带的上部(至 2.5 米)恢复到淡水条件(EC<1000µS/cm)。根据模型模拟,尽管含水层的顶部 6 米可能在大约 5 年内变得新鲜,但整个含水层(至 28 米)可能需要超过 15 年才能完全恢复。

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