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首页> 外文期刊>Journal of Hydrology >Determining the interaction between groundwater and saline water through groundwater major ions chemistry
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Determining the interaction between groundwater and saline water through groundwater major ions chemistry

机译:通过地下水主要离子化学方法确定地下水与盐水​​之间的相互作用

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It is hypothesized that groundwater major ions chemistry can be employed to determine the interaction between groundwater (GW) and saline water/seawater (SW) in costal aquifers, and that there exists a relationship between total dissolved solids with chloride, sodium, magnesium and sulphate concentrations of groundwater. This hypothesis was tested on a watershed located along the southeastern coast of India. From empirical data collected twice during pre- and post-monsoon seasons, it was found that in both seasons, out of 99.9% of the electrical conductivity (EC) variability due to the combined effect of Na~+, Ca~(2+)+Mg~(2+), SO_4~(2-), Cl~-, HCO~-3 and NO_3~-, 54.0% was due to Cl~- alone in pre-monsoon, and 43.1% in post-monsoon. Results of factor analysis highlighted the multi-scale control of the fluid exchange and the influence of mixing zones between groundwater and saline water. Hydrochemical processes that accompany the intrusion of seawater were identified using ionic changes. It was observed during the sampling periods that the mixing due to seawater intrusion varied from 4.82% to 7.86% throughout the watershed. Negative values of ionic change (echange) for Na~+ and K~+ decreased with the increasing fraction of seawater.
机译:假设可以利用地下水中的主要离子化学方法确定沿海含水层中地下水(GW)与盐水/海水(SW)之间的相互作用,并且总溶解固体与氯化物,钠,镁和硫酸盐之间存在关系地下水浓度。在印度东南沿海的分水岭上检验了这一假设。根据季风前后前后两次收集的经验数据,发现在两个季节中,由于Na〜+,Ca〜(2+)的共同作用,在电导率(EC)变异性的99.9%中, + Mg〜(2 +),SO_4〜(2-),Cl〜-,HCO〜-3和NO_3〜-,季风前仅Cl〜-占54.0%,季风后仅43.1%。因子分析结果突显了流体交换的多尺度控制以及地下水和盐水之间混合区域的影响。使用离子变化确定伴随海水入侵的水化学过程。在采样期间观察到,在整个流域中,海水入侵引起的混合变化在4.82%至7.86%之间。 Na〜+和K〜+的离子变化(变化)的负值随着海水比例的增加而减小。

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