ISSN 1009-6248CN 61-1149/P 双月刊

主管单位:中国地质调查局

主办单位:中国地质调查局西安地质调查中心
中国地质学会

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    毛乌素沙地旱柳水分调节机制研究

    Study on Water Regulation Mechanism of Salix matsudana Koidz in Mu Us Sandy Land

    • 摘要: 在全球气候变化与区域水资源短缺背景下,干旱半干旱区植被水分利用的多因子协同驱动机制研究亟待深化,但现有研究对毛乌素沙地旱柳液流过程中气象因子–土壤水–地下水协同调控机制解析仍存在不足。因此,本研究以毛乌素沙地40年生旱柳为对象,通过原位连续监测气象要素、地下水埋深、土壤含水率及树干液流密度,结合结构方程模型与增强回归树模型,系统解析雨季气象因子与土壤水、地下水协同作用下旱柳的水分利用策略,阐明气象因子调控旱柳液流的关键路径。结果表明:旱柳为深层水分依赖型树种,形成随生长季水文气象条件动态调整的水分利用策略,优先利用250~450 cm深层土壤水与地下水,对降雨形成的表层土壤水利用效率极低;气象因子对旱柳液流存在直接驱动与间接调控的双重机制,太阳辐射为核心直接驱动因子,相对湿度为关键大气约束因子,地下水位通过地下水–深层土壤水–植被液流水文传导链产生显著正向间接效应(总效应0.39);在气温9.97~21.20℃、相对湿度适中时旱柳液流密度达峰值。本研究厘清了旱柳液流过程的多因子协同驱动机制,为毛乌素沙地旱柳林经营与生态恢复工程提供了理论支撑。

       

      Abstract: Against the background of global climate change and regional water scarcity, in-depth research on the synergistic driving mechanisms of multiple factors controlling vegetation water use in arid and semi-arid regions is urgently required. Existing studies lack sufficient analysis on the synergistic regulation of meteorology-soil water-groundwater in the sap flow process of Salix matsudana Koidz in the Mu Us Sandy Land. Therefore, taking 40-year-old Salix matsudana Koidz in the Mu Us Sandy Land as the research object, this study systematically analyzed the water use strategy of Salix matsudana Koidz under the synergistic effect of meteorological factors and groundwater in the rainy season, and clarified the key paths of meteorological factors regulating the sap flow process of Salix matsudana Koidz, through in-situ continuous monitoring of meteorological elements, groundwater depth, soil moisture content and stem sap flow density, combined with Structural Equation Model and Boosted Regression Tree model. The results show that Salix matsudana Koidz is a deep water-dependent tree species, forming a water use strategy dynamically adjusted with hydro-meteorological conditions in the growing season. It preferentially utilizes deep soil water and groundwater at 250–450 cm, with extremely low utilization efficiency of surface soil water recharged by rainfall. Meteorological factors regulate the sap flow of Salix matsudana Koidz through dual paths of direct driving and indirect synergy. Solar radiation (β=0.71, P<0.001) is the core direct driving factor, relative humidity (β=−0.27, P<0.05) is the key atmospheric constraint factor, and groundwater level exerts a significant positive indirect effect (total effect 0.39) through the hydrological transmission chain of groundwater-deep soil water-vegetation sap flow. The sap flow density of Salix matsudana Koidz peaks when the air temperature is 9.97–21.20℃ and the relative humidity is moderate. This study clarifies the multi-factor coupled driving mechanism of the sap flow process of Salix matsudana Koidz and provides theoretical support for the management of Salix matsudana Koidz forests and ecological restoration projects in the Mu Us Sandy Land.

       

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