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首页> 外文期刊>Journal of applied science & environmental management: JASEM >Investigation of Seawater Intrusion into Coastal Groundwater Aquifers of Escravos, Western Niger Delta, Nigeria
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Investigation of Seawater Intrusion into Coastal Groundwater Aquifers of Escravos, Western Niger Delta, Nigeria

机译:尼日利亚尼日尔河三角洲埃斯克拉沃斯沿海地下水含水层中海水入侵的调查

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In coastal regimes groundwater aquifers are often vulnerable to saltwater intrusion. Saltwater intrusion is often precipitated by natural hydrodynamic processes and overpumping of groundwater resource. Saltwater intrusion is presumed to have significant effect on quality of groundwater and accountable for lack of access to freshwater in the areas under study. The objective of this study is to use resistivity data obtained from vertical electrical sounding to ascertain the salinity of shallow aquifers, determine depth and thickness of freshwater aquifers. The Schlumberger array configuration was employed in acquisition of data. The maximum and minimum spacing between electrodes (AB/2) ranged from 2m to 250m. Resistivity values ranged from 0.24Ωm to 427Ωm, Values which ranged from 0.2Ωm to 4Ωm was construed to be aquifer saturated with saltwater, brackish water was inferred from resistivity values which vary between 7Ωm and 11Ωm, and clay was assigned to resistivity values that ranged from 17Ωm to 29Ωm. Effect of tide contributes to salinity of shallow aquifer around the seashore area. Aquifers saturated with saltwater are found at the depths of 10.5m, brackish water at 4m to 9m, while freshwater can be located from the depth of 19-46m. The study is able to reveal that groundwater quality has been compromised by intrusion of saltwater. We conclude that there is potential of saltwater intrusion into the freshwater lenses, which may be enhanced in the future by over- development of groundwater.
机译:在沿海地区,地下水蓄水层通常容易受到海水入侵。咸水入侵通常是由自然的水动力过程和地下水资源的过度抽取引起的。据推测,盐水入侵会对地下水质量产生重大影响,并应归因于所研究地区缺乏淡水。这项研究的目的是利用从垂直电测深获得的电阻率数据来确定浅层含水层的盐度,确定淡水含水层的深度和厚度。斯伦贝谢阵列配置用于数据采集。电极之间的最大和最小间距(AB / 2)为2m至250m。电阻率值范围从0.24Ωm到427Ωm,范围从0.2Ωm到4Ωm被解释为被盐水饱和的含水层,从7Ωm到11Ωm之间的电阻率值推断微咸水,并且将粘土分配给电阻率值范围从17Ωm至29Ωm。潮汐的作用促进了沿海地区浅层含水层的盐度。在10.5m的深度发现咸水饱和的含水层,在4m到9m的咸淡水,而淡水的深度在19-46m。该研究能够揭示出盐水入侵已损害了地下水质量。我们得出的结论是,咸水有可能侵入淡水晶状体,将来可能因地下水的过度开发而增强。

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