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首页> 外文期刊>Hydrology and Earth System Sciences >Groundwater dynamics under water-saving irrigation and implications for sustainable water management in an oasis: Tarim River basin of western China
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Groundwater dynamics under water-saving irrigation and implications for sustainable water management in an oasis: Tarim River basin of western China

机译:节水灌溉下的地下水动力学及其对绿洲可持续水资源管理的意义:塔里木河流域,中国西部

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摘要

Water is essential for life. Specifically in the oases of inland arid basins, water is a critically limited resource, essential for the development of the socio-economy and the sustainability of eco-environmental systems. Due to the unique hydrological regime present in arid oases, a moderate groundwater table is the goal of sustainable water management. A shallow water table induces serious secondary salinization and collapse of agriculture, while a deep water table causes deterioration of natural vegetation. From the hydrological perspective, the exchange flux between the unsaturated vadose zone and groundwater reservoir is a critical link to understanding regional water table dynamics. This flux is substantially influenced by anthropogenic activities. In the Tarim River basin of western China, where agriculture consumes over 90% of available water resources, the exchange flux between the unsaturated vadose zone and groundwater reservoir is influenced strongly by irrigation. Recently, mulched drip irrigation, a sophisticated water-saving irrigation method, was widely applied in the Tarim River basin, which greatly impacted the exchange flux and thus the regional groundwater dynamics. Capitalizing on recent progress in evaporation measurement techniques, we can now close the water balance and directly quantify the exchange flux at the field scale, thus gaining a better understanding of regional groundwater dynamics. In this study, comprehensive observations of water balance components in an irrigated cropland were implemented in 2012 and 2013 in a typical oasis within the Tarim River basin. The water balance analysis showed that the exchange flux and groundwater dynamics were significantly altered by the application of water-saving irrigation. The exchange flux at the groundwater table is mostly downward (310.5 mm year(-1)), especially during drip irrigation period and spring flush period, while the upward flux is trivial (16.1 mm year(-1)) due to the moderate groundwater table depth (annual average depth 2.9 m). Traditional secondary salinization caused by intense phreatic evaporation (fed by upward exchange flux) is alleviated. However, a new form of secondary salinization may be introduced unwittingly if there is lack of water for periodic flushing, especially when brackish water is used in the irrigation. Furthermore, the water saved via drip irrigation has been used in further growth of irrigated lands instead of supporting the ecological system. This could lead to an increased risk of eco-environmental degradation and calls for improved governance schemes. The insights gained from this study can be potentially applied to other arid inland areas (e.g., central Asia) which face similar water shortages and human development problems.
机译:水对于生命至关重要。特别是在内陆干旱盆地的绿洲中,水是极为有限的资源,对于社会经济的发展和生态环境系统的可持续性至关重要。由于干旱绿洲中存在独特的水文状况,地下水位适中是可持续水管理的目标。浅水位会引起严重的次生盐渍化和农业崩溃,而深水位会导致自然植被退化。从水文角度看,非饱和渗流带与地下水储层之间的交换通量是理解区域地下水位动态的关键环节。这种通量基本上受到人为活动的影响。在中国西部的塔里木河流域,农业消耗了超过90%的可用水资源,非饱和渗流带与地下水库之间的交换通量受到灌溉的强烈影响。最近,塔里木河流域广泛采用了一种覆盖膜滴灌技术,一种节水灌溉的先进方法,极大地影响了交换通量,进而影响了区域地下水动力学。利用蒸发测量技术的最新进展,我们现在可以关闭水平衡并直接在田间规模上量化交换通量,从而更好地了解区域地下水动力学。在这项研究中,2012年和2013年在塔里木河流域的典型绿洲中对灌溉农田的水平衡成分进行了全面观测。水平衡分析表明,节水灌溉使交换通量和地下水动力学发生了显着变化。地下水位的交换通量主要是向下(310.5 mm年(-1)),特别是在滴灌期和春季冲洗期,而由于地下水温和,向上的通量微不足道(16.1 mm年(-1))。工作台深度(年平均深度2.9 m)。减轻了由剧烈的潜水蒸发(由向上交换通量供给)引起的传统的次生盐碱化。但是,如果缺乏用于定期冲洗的水,尤其是在灌溉中使用微咸水的情况下,可能会不知不觉地引入新的次生盐渍化形式。此外,通过滴灌节省的水已被用于灌溉土地的进一步发展,而不是为生态系统提供支持。这可能导致生态环境退化的风险增加,并要求改进治理计划。从这项研究中获得的见识可以潜在地应用于面临类似水资源短缺和人类发展问题的其他干旱内陆地区(例如中亚)。

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