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An Integrated Hydrological Model for the Restoration of Ecosystems in Arid Regions: Application in Zhangye Basin of the Middle Heihe River Basin, Northwest China

机译:干旱地区生态系统恢复的综合水文模型:西北地区黑河流域张掖盆地的应用

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摘要

River basins in or across arid regions have been facing intensified water scarcity and ecological problems, mainly due to the intense irrigated agriculture. Integrating the multiprocesses in hydrological cycle is quite necessary to make reasonable management strategies. In this paper, an integrated multiprocess hydrological model was proposed by coupling river water flow, groundwater flow, canal conveyance, and vadose water flow processes. It was applied to the Zhangye basin of middle Heihe River basin for searching management strategies to restore the ecosystems (i.e., ensure surface runoff into downstream and also recover local groundwater levels). The integrated model was calibrated and validated during 2005-2007 and 2008-2010, respectively. Simulation of groundwater levels (GWLs, 32 wells) and surface runoff both matched well with the observed values, with Nash and Sutcliffe model efficiency > 0.38 and R~2 > 0.57. Then various scenarios were designed with considering five alternatives of different farmland area decrease and three alternatives of groundwater exploitation. Responses of surface runoff and GWLs were predicted for 20 years. Surface runoff change was compared with the water diversion curve, and GWL recovery was also discussed. Results revealed that ecosystems could not be restored with current agricultural area, even shutting down groundwater abstraction for irrigation. A decrease of about 30% of farmland area and using surface river water instead of pumping groundwater for irrigation could satisfy water diversion demand with only a slight GWL decline. Furthermore, the extra irrigation with diverted surface water during nongrowing season could further lead to the recovery of GWLs while without causing negative effects on surface runoff.
机译:在干旱地区的河流盆地面临着加剧水资源稀缺和生态问题,主要是由于灌溉农业激烈。整合多处理在水文周期中是非常有必要做出合理的管理策略。本文通过耦合河水流动,地下水,运河输送和VADOSE水流程,提出了一种集成的多处理水文模型。它适用于中河流域张掖盆地,用于搜索管理策略来恢复生态系统(即,确保地表径流进入下游,并收回当地地下水位)。在2005 - 2007年和2008 - 2010年,分别校准并验证了集成模型。用观察值匹配地下水位(GWL,32个孔)和表面径流的仿真,纳什和Sutcliffe模型效率> 0.38和R〜2> 0.57。然后设计了各种场景,考虑到不同农田面积的五个替代方案减少和地下水开采的三种替代方案。表面径流和GWLS的响应预测为20年。将表面径流变化与进水曲线进行比较,并且还讨论了GWL恢复。结果表明,生态系统无法通过当前的农业领域恢复,甚至可以关闭地下水抽象进行灌溉。减少约30%的农田面积和使用地面河水,而不是灌溉地下水,只有轻微的GWL衰落,可以满足进水需求。此外,非研磨季节期间转向地表水的额外灌溉可以进一步导致GWL的恢复,同时不会对表面径流产生负面影响。

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  • 作者单位

    Chinese-Israeli International Center for Research and Training in Agriculture China Agricultural University Beijing China;

    Chinese-Israeli International Center for Research and Training in Agriculture China Agricultural University Beijing China;

    Chinese-Israeli International Center for Research and Training in Agriculture China Agricultural University Beijing China;

    Chinese-Israeli International Center for Research and Training in Agriculture China Agricultural University Beijing China;

    Center for Agricultural Water Research China Agricultural University Beijing China;

    Chinese-Israeli International Center for Research and Training in Agriculture China Agricultural University Beijing China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Integrated; Hydrological Model; Northwest China;

    机译:综合;水文模型;西北;
  • 入库时间 2022-08-19 19:34:36

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