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Environmental Groundwater Depth for Groundwater-Dependent Terrestrial Ecosystems in Arid/Semiarid Regions: A Review

机译:干旱/半干旱地区依赖地下水的陆地生态系统的环境地下水深度研究进展

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摘要

Groundwater in arid/semiarid regions plays crucial roles in providing drinking water supply, supporting irrigated agriculture, and sustaining important native terrestrial ecosystems. Groundwater depth controls water availability to vegetation and is essential for conserving groundwater-dependent terrestrial ecosystems. Environmental groundwater depth can be defined as a mean depth or a range of depths, satisfying the growth of natural vegetation that is not under stress, either due to lack of water or anoxia or soil salinization. Five methodologies have been reported to estimate environmental groundwater depth: the direct ones rely on response functions that relate vegetation condition, e.g., physiological parameters, appearance frequency, community structure, and remotely sensed physical indexes, to changes in groundwater depth; the indirect one estimates environmental groundwater depth based on the threshold of soil moisture content. To fill a knowledge gap of unique recognized methodology, a conceptual framework was proposed, which involves initial estimation (data collection, response assessment, and estimation) and feedback adjustment (implementation and modification). A key component of the framework is to quantify the linkage between ecological conditions and geohydrological features. This review may provide references for groundwater resources management, ecological conservation, and sustainable development in arid/semiarid regions.
机译:干旱/半干旱地区的地下水在提供饮用水,支持灌溉农业和维持重要的本土陆地生态系统方面发挥着至关重要的作用。地下水深度控制着植被的水分供应,对于保护依赖地下水的陆地生态系统至关重要。可以将环境地下水深度定义为平均深度或一定深度范围,以满足由于缺水,缺氧或土壤盐碱化而未承受压力的自然植被的生长。据报导有五种方法来估算环境地下水深度:直接方法依靠与植被状况相关的响应函数,例如生理参数,出现频率,群落结构和遥感物理指标与地下水深度的变化;间接方法是根据土壤水分含量的阈值估算环境地下水深度。为了填补公认的独特方法的知识空白,提出了一个概念框架,其中涉及初始估计(数据收集,响应评估和估计)和反馈调整(实施和修改)。该框架的关键组成部分是量化生态条件与地球水文特征之间的联系。这篇综述可以为干旱/半干旱地区的地下水资源管理,生态保护和可持续发展提供参考。

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