基于稳定同位素示踪的高寒草甸土壤水分入渗机制及来源

IF 5.6 1区 农林科学 Q1 SOIL SCIENCE
Li Zongjie , Xu Bin , Liu Xiaoying , Li Zongxing , Feng Qi , Wang Dongpeng , Zhang Wenbao , Li Hao , Liu Fang
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引用次数: 0

摘要

为加强黄河源区土壤水资源的管理和保护,本研究对高寒草甸土壤水分入渗进行了定量分析。同时,分析了SRYR土壤水分的补给来源和补给方式。结果表明:活塞流模式和优先流模式均存在,以活塞流模式为主;优先流模式对SRYR不同区域深层土壤水的贡献如下:西比;北比;东方。活塞流模式对深层土壤水分的贡献如下:北比;西比;南部。在2021年大消融期,降水被确定为SRYR土壤水分的主要补给来源。降水对土壤水分的贡献率随土层深度的增加而减小。阳坡降水对土壤水分的贡献率略高于阴坡;不同植被类型对土壤水分补给比例有明显影响。降水对土壤水分的贡献率随海拔的升高而减小,而地面冰的贡献率随海拔的升高而增大。本研究可为长江流域土壤水资源的管理与保护提供理论支持,有利于土壤水资源的可持续发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Infiltration mechanism and source of soil water in alpine meadows based on stable isotope tracing
To strengthen the management and protection of soil water resources in the Yellow River source area(SRYR), this study conducted a quantitative analysis of the infiltration of soil water in alpine meadows. Meanwhile, the recharge source and mode of soil water in the SRYR were analyzed. The results indicated that both piston flow mode and priority flow mode were present, with the piston flow mode being predominant. The contributions of priority flow mode to deep soil water in different parts of the SRYR were as follows: South > West > North > East. The contributions of piston flow mode to deep soil water were as follows: East > North > West > South. In the heavy ablation period in 2021, precipitation was identified as the primary recharge source of soil water in the SRYR. The contribution rates of precipitation to soil water decreased with the increase in soil depth. The contribution rate of precipitation to soil water on the sunny slope was slightly higher than that on the shady slope. Different vegetation types had obvious effects on the recharge proportions of soil water. In addition, the contribution rates of precipitation to soil water decreased with the increase in altitude, while the contribution rates of ground ice increased with the increase in altitude. This study can provide theoretical support for soil water management and protection in the SRYR, which is conducive to the sustainable development of soil water resources.
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来源期刊
Geoderma
Geoderma 农林科学-土壤科学
CiteScore
11.80
自引率
6.60%
发文量
597
审稿时长
58 days
期刊介绍: Geoderma - the global journal of soil science - welcomes authors, readers and soil research from all parts of the world, encourages worldwide soil studies, and embraces all aspects of soil science and its associated pedagogy. The journal particularly welcomes interdisciplinary work focusing on dynamic soil processes and functions across space and time.
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