首页> 外文期刊>Journal of arid environments >Potential impact of convective fracture venting on salt-crust buildup and ground-water salinization in arid environments
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Potential impact of convective fracture venting on salt-crust buildup and ground-water salinization in arid environments

机译:干旱环境中对流裂缝排空对盐结皮堆积和地下水盐渍化的潜在影响

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摘要

We present a conceptual model by which surface-exposed fractures could be the main source of aquifer salinization under arid conditions. Fractures in thick vadose zones of low permeability are considered the major conduit for aquifer recharge in arid and semi-arid lands. Evaporation of pore water from within fractures is hypothesized to be enhanced by convective air circulation within the fracture that vents moisture to the atmosphere. This phenomenon also enhances lateral movement of pore water from the adjacent matrix towards the fracture opening. Subsequent evaporation results in salt precipitation within the fracture that can be conducted to the aquifer during the rainy season. The proposed model suggests that most of the water vapor loss from fractures is driven by an inversion in the thermal gradient of the adjacent matrix during the cold nights rather than the hot days. This conceptual model is investigated theoretically and tested in a series of preliminary experimental studies.
机译:我们提出了一个概念模型,在干旱条件下,暴露于地面的裂缝可能是含水层盐渍化的主要来源。低渗透率的厚渗流带中的裂缝被认为是干旱和半干旱地区含水层补给的主要渠道。据推测,裂缝内部孔隙水的蒸发可通过裂缝内部的对流空气循环将水分排到大气中来增强。这种现象还增强了孔隙水从相邻基质向裂缝开口的横向运动。随后的蒸发导致裂缝内的盐沉淀,在雨季可将盐沉淀到含水层。所提出的模型表明,裂缝产生的大部分水蒸气流失是由在寒冷的夜晚而不是炎热的夜晚,相邻基质的热梯度反转所驱动的。对概念模型进行了理论研究,并在一系列初步实验研究中进行了测试。

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