基于改进GALDIT模型的泥质海岸带海水入侵区地下水脆弱性评价

    Groundwater Vulnerability Evaluation of Seawater Intrusion Zones in Muddy Coastal Zones Based on the Modified GALDIT Method

    • 摘要: 受海平面上升和地下水超采的影响,海水入侵已成为海岸带地区普遍面临的环境问题。如何识别不同成因的海水入侵特征,建立科学有效的评价体系,已成为当前海水入侵研究的热点和难点。本文以同时存在古咸水入侵和现代海水入侵的莱州湾南岸泥质海岸带为研究区域,通过地下水化学特征分析,识别了入侵类型与来源,并对原始GALDIT模型进行了改进。改进内容包括:用区域内的富水程度替代原始模型中的水力传导系数,并对其他参数(如离岸距离和海水入侵的影响等)的原始分类进行调整,以更好地反映和评估研究区的实际情况。研究结果表明,原始GALDIT模型在评估古海水入侵和现代海水入侵共存区域时存在局限性。改进后的模型通过替换参数、根据历史入侵资料调整离岸距离分类方式,并引入电导率(EC)作为关键参数,有效评估了莱州湾南岸地区海水入侵区的地下水脆弱性,为该地区海水入侵的治理和管理措施的制定提供了科学依据。

       

      Abstract: Seawater intrusion has become a common environmental problem in coastal areas due to rising sea levels and the overexploitation of groundwater. How to identify the characteristics of seawater intrusion of different causes and establish a scientific and effective evaluation system are the hotspots and difficulties of seawater intrusion research at present. In this paper, we focus on the muddy coastal zone area where the two types of invasion, ancient brackish water invasion, and modern seawater invasion, co-exist. We aim to identify the types of invasion and sources through an analysis of groundwater chemistry characteristics, this paper improves the original GALDIT method, and the improvements include substituting the degree of water enrichment (Q) in the area for the hydraulic conductivity coefficient (A) in the original model, and adjusting the original categorization of the other parameters, including the distance to the shore (D), and the impact of seawater intrusion (I), into better reflect and assess the actual situation in the study area. The results indicate that the original GALDIT model has limitations in assessing the coexistence area of ancient and modern seawater intrusion. The modified models, which include parameter replacements, modified parameter classifications, and the introduction of electrical conductivity (EC) as a key parameter, have effectively evaluated the groundwater vulnerability of the seawater intrusion area on the southern coast of Laizhou Bay, establishing a scientific foundation for developing treatment and management strategies for seawater intrusion along the south shore of Laizhou Bay.

       

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