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Analysis of soil water movement inside a footslope and a depression in a karst catchment Southwest China

机译:西南喀斯特流域山坡和洼地内土壤水分运动分析

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摘要

Soil water movement is difficult to explain with event-scale approaches, especially in karst regions. This paper focuses on investigating seasonal recharge and mean residence time (MRT) of soil water based on temporal variation of stable isotopes (δD and δ18O) and a dispersion model (DM), and discussing their differences along a footslope and a depression in a small karst catchment of southwest China. Temporal variations of the stable isotopes in precipitation and soil water within 0–100 cm profiles were monitored weekly for approximately 43 and 99 weeks. Results show that the seasonal recharge of soil water inside the footslope and the depression were similar, but the vertical flow velocity was higher implying a faster hydrological process in the footslope. The MRT of soil water (2–64 weeks) increased roughly, suggesting decreasing velocity of water displacement with increasing depth. However, the MRT at 60–100 cm depths in the depression (47–64 weeks) was obviously longer than at other sites, revealing more intensive water mixing. Furthermore, a shallower isotopic damping depth was found in the depression, indicating stronger delay and attenuation effects on base flow recharge. These results provide new insights into research on hydrological processes in karst areas.
机译:用事件尺度方法难以解释土壤水分运动,特别是在喀斯特地区。本文基于稳定同位素(δD和δ 18 O)随时间的变化以及分散模型(DM),研究土壤水的季节性补给量和平均停留时间(MRT),并探讨它们之间的差异。西南小喀斯特流域的山坡和洼地处。在每周约43和99周内,每周监测0-100cm剖面内降水和土壤水中稳定同位素的时间变化。结果表明,山坡和洼地土壤水分的季节补给相似,但垂直流速较高,表明山坡的水文过程较快。土壤水的MRT(2-64周)大致增加,表明水驱替速度随深度增加而降低。然而,在洼地(47-64周)内,深度为60-100cm的MRT明显比其他地方更长,表明水的混合更加密集。此外,在凹陷中发现了较浅的同位素阻尼深度,表明对基流补给的延迟和衰减作用更强。这些结果为岩溶地区水文过程研究提供了新的见识。

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