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首页> 外文期刊>Geophysical Research Letters >New insights into saline water evaporation from porous media: Complex interaction between evaporation rates, precipitation, and surface temperature
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New insights into saline water evaporation from porous media: Complex interaction between evaporation rates, precipitation, and surface temperature

机译:来自多孔介质的盐水蒸发新的洞察:蒸发速率,沉淀和表面温度之间的复杂相互作用

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Understanding salt transport and deposition patterns during evaporation from porous media is important in many engineering and hydrological processes such as soil salinization, ecosystem functioning, and land-atmosphere interaction. As evaporation proceeds, salt concentration increases until it exceeds solubility limits, locally, and crystals precipitate. The interplay between transport processes, crystallization, and evaporation influences where crystallization occurs. During early stages, the precipitated salt creates an evolving porous structure affecting the evaporation kinetics. We conducted a comprehensive series of experiments to investigate how the salt concentration and precipitation influence evaporation dynamics. Our results illustrate the contribution of the evolving salt crust to the evaporative mass losses. High-resolution thermal imaging enabled us to investigate the complex temperature dynamics at the surface of precipitated salt, providing further confirmation of salt crust contribution to the evaporation. We identify different phases of saline water evaporation from porous media with the corresponding dominant mechanisms in each phase and extend the physical understanding of such processes.
机译:在多孔介质蒸发过程中了解盐运输和沉积图案在许多工程和水文过程中是重要的,如土壤盐渍化,生态系统功能和土地气氛相互作用。作为蒸发进行,盐浓度增加,直到它超过溶解度限制,局部和晶体沉淀物。运输过程,结晶和蒸发之间的相互作用发生在结晶发生的影响。在早期阶段期间,沉淀的盐产生了影响蒸发动力学的不良多孔结构。我们进行了一系列全面的一系列实验,以研究盐浓度和降水如何影响蒸发动态。我们的结果说明了进化的盐外壳对蒸发质量损失的贡献。高分辨率热成像使我们能够研究沉淀盐表面的复杂温度动态,从而进一步确认盐壳对蒸发的贡献。我们识别来自多孔介质的盐水蒸发的不同阶段,每个相中的相应主导机制并延长了对这些过程的物理理解。

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