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水源涵养是评价陆地生态系统服务功能的重要指标,然而学界对水源涵养功能概念和计算方法仍存在诸多争论。这一方面说明水源涵养功能评估具有重要的现实意义,同时也说明其概念的复杂性和模糊性,亟需从生态学和水文学的基本理论出发,厘清水源涵养功能概念的内涵和评估方法,促进科学决策和有效管理。研究水源涵养功能时,生态学家更关注陆地生态系统的蓄水能力(Smax),而水文学家更关注流域的产流量(Q),两者均具有合理性,但各有侧重,若不分别辨析,极易造成概念混淆。理论和数据分析表明,蓄水能力和产流量虽然联系紧密,但概念完全不同。陆地生态系统的Smax决定了流域对降水的分配:即蒸散发(绿水)和Q(蓝水),Smax和Q在降水量一定的情况下往往存在此消彼长的关系。研究发现生态系统的根区蓄水能力(SRmax)是联系绿水和蓝水的核心要素,是水源涵养功能评估的关键变量。大尺度根区蓄水能力主要由气候决定,可借鉴工程水文中设计水库的累积曲线法,根据生态系统用水的生存策略通过气候反演。最后,本文提出3点建议:(1)在实践中分别评估生态系统的绿水和蓝水涵养功能;(2)进一步全面考虑冰川积雪、地下水等多要素的水源涵养功能;(3)...  相似文献   
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This review summarizes the effects of vegetation on runoff and soil loss in three dimensions: vertical vegetation structures(aboveground vegetation cover, surface litter layer and underground roots), plant diversity, vegetation patterns and their scale characteristics. Quantitative relationships between vegetation factors with runoff and soil loss are described. A framework for describing relationships involving vegetation, erosion and scale is proposed. The relative importance of each vegetation dimension for various erosion processes changes across scales. With the development of erosion features(i.e., splash, interrill, rill and gully), the main factor of vertical vegetation structures in controlling runoff and soil loss changes from aboveground biomass to roots. Plant diversity levels are correlated with vertical vegetation structures and play a key role at small scales, while vegetation patterns also maintain a critical function across scales(i.e., patch, slope, catchment and basin/region). Several topics for future study are proposed in this review, such as to determine efficient vegetation architectures for ecological restoration, to consider the dynamics of vegetation patterns, and to identify the interactions involving the three dimensions of vegetation.  相似文献   
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