首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Isolating the impacts of anthropogenic water use within the hydrological regime of north India
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Isolating the impacts of anthropogenic water use within the hydrological regime of north India

机译:隔离北印度水文制度内的人为水分的影响

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The effects of anthropogenic water use play a significant role in determining the hydrological cycle of north India. This paper explores anthropogenic impacts within the region's hydrological regime by explicitly including observed human water use behaviour, irrigation infrastructure and the natural environment in the CHANSE (Coupled Human And Natural Systems Environment) socio-hydrological modelling framework. The model is constrained by observed qualitative and quantitative information collected in the study area, along with climate and socio-economic variables from additional sources. Four separate scenarios, including business as usual (BAU, representing observed irrigation practices), groundwater irrigation only (where the influence of the canal network is removed), canal irrigation only (where all irrigation water is supplied by diverted surface water) and rainfed only (where all human interventions are removed) are used. Under BAU conditions the modelling framework closely matched observed groundwater levels. Following the removal of the canal network, which forces farmers to rely completely on groundwater for irrigation, water levels decrease, while under a canal-only scenario flooding occurs. Under the rainfed-only scenario, groundwater levels similar to current business-as-usual conditions are observed, despite much larger volumes of recharge and discharge entering and leaving the system under BAU practices. While groundwater abstraction alone may lead to aquifer depletion, the conjunctive use of surface and groundwater resources, which includes unintended contributions of canal leakage, create conditions similar to those where no human interventions are present. Here, the importance of suitable water management practices, in maintaining sustainable water resources, is shown. This may include augmenting groundwater resources through managed aquifer recharge and reducing the impacts on aquifer resources through occasional canal water use where possible. The importance of optimal water management practices that highlight trade-offs between environmental impact and human wellbeing are shown, providing useful information for policy makers, water managers and users. (c) 2019 John Wiley & Sons, Ltd.
机译:人为水的影响在确定北印度的水文周期方面发挥了重要作用。本文通过明确地包括观察到的人用水行为,灌溉基础设施和陈核(耦合人和自然系统环境)社会水文建模框架,探讨该地区水文制度内的人为影响。该模型受到研究区中收集的观察到的定性和定量信息,以及来自额外来源的气候和社会经济变量。四种独立的情景,包括通常的业务(BAU,代表观察到的灌溉实践),仅限地下水灌溉(除去运河网络的影响),仅限运河灌溉(所有灌溉水通过转移的地表水供应)并仅雨量(将所有人类干预被移除)使用。根据BAU条件,建模框架密切匹配的地下水位。在拆除运河网络后,迫使农民依赖地下水地依赖于地下水进行灌溉,水平降低,而在运河的情况下发生洪水。在幼雨的情况下,尽管更多的充电和放电进入并在BAU实践下,但观察到类似于当前业务的常规条件的地下水位。虽然单独的地下水抽象可能导致含水层消耗,但地表和地下水资源的联合用途,包括运河泄漏的意外贡献,创造与存在人类干预措施类似的条件。这里,显示了适当的水管理实践,以维持可持续水资源的重要性。这可能包括通过管理含水层充值增强地下水资源,通过偶尔可能在可能的情况下通过偶尔运河用水来减少对含水层资源的影响。展示了最佳水管理实践的重要性,突出了环境影响与人类健康之间的权衡,为政策制定者,水管理者和用户提供了有用的信息。 (c)2019 John Wiley&Sons,Ltd。

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