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Impacts of inland boundary conditions on modeling seawater intrusion in coastal aquifers due to sea-level rise

机译:内陆边界条件对沿海含水层海水入侵造成海平面升起的影响

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摘要

Inland boundary conditions have significant impacts on seawater intrusion (SWI) due to sea-level rise (SLR). This study investigated the impacts of three inland boundary conditions (flux-controlled (FC), head-controlled (HC) and general-head boundary (GHB)) on modeling SWI due to SLR in coastal aquifers. First, we used the TOUGH2/EOS7 software program to solve the standard Henry's problem and compared the results with those from the literatures. Numerical simulations were performed to investigate the impacts of the three inland boundary conditions on SWI induced by SLR in confined coastal aquifers (standard Henry's problem) and unconfined coastal aquifers (Henry's problem extended to unconfined domains). The simulation results show that HC systems in both confined and unconfined coastal aquifers are remarkably vulnerable to the effects of SLR owing to the resulting decreased head difference, while FC systems are relatively insensitive to SLR because the equivalent freshwater head at the inland boundary can increase by a similar magnitude to the SLR. The GHB boundary is more realistic than the other two boundary conditions: the recharge decreases because of SLR depending on the aquifer properties and the head difference between the reference head and the equivalent freshwater head at the seaside boundary.
机译:由于海平面上升(SLR),内陆边界条件对海水入侵(SWI)产生重大影响。本研究调查了三个内陆边界条件(磁通控制(FC),头部控制(HC)和通用头边界(GHB))对沿海含水层中的单反相造的SWI模拟SWI的影响。首先,我们使用艰难的2 / EOS7软件程序来解决标准的亨利问题,并将结果与​​来自文献的结果进行了比较。进行了数值模拟,研究了三个内陆边界条件对SLR诱导的SWI在密闭的沿海含水层(标准亨利的问题)和非整合沿海含水层(亨利的问题扩展到无限域)的影响。仿真结果表明,受限和不合适的沿海含水层中的HC系统非常容易受到SLR的影响由于导致的头部差异,而FC系统对SLR相对不敏感,因为内陆边界的等效淡水头可以增加与SLR相似的幅度。 GHB边界比其他两个边界条件更真实:由于SLR,根据含水层特性和参考头与海方边界的等效淡水头之间的头部差异,再充电减少。

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