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Using bromide data tracer and HYDRUS-1D to estimate groundwater recharge and evapotranspiration under filmmulched drip irrigation in an arid Inland Basin, Northwest China

机译:在西北地区干旱内陆盆地中,使用溴化物数据示踪剂和氢气-1D估计地下水充电和蒸散滴灌滴灌。

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摘要

Accurate estimation of groundwater recharge (GR) and evapotranspiration (ET) are essential for sustainable management of groundwater resources, especially in arid and semi-arid regions. In the Manas River Basin (MRB), water shortage is the main factor restricting sustainable development of irrigated agriculture, which relies heavily on groundwater. Film-mulched drip irrigation significantly changes the pattern and dominant processes of water flow in the unsaturated zone, which increases the difficulty of GR and ET estimation. To better estimate GR and ET under film-mulched drip irrigation in the MRB, bromide tracer tests and soil lithologic investigation were conducted at 12 representative sites. A one-dimensional variably saturated flow model (HYDRUS-1D) was calibrated at each site using soil evaporation data inferred from the bromide tracer tests. The results showed that average annual soil evaporation in uncultivated lands calculated from bromide trace tests was 25.55 mm. The annual GR ranged from 5.5 to 37.0 mm under film-mulched drip irrigation. The annual ET ranged from 507.0 to 747.1 mm, with soil evaporation between 35.7 and 117.0 mm and transpiration between 460.9 and 642.3 mm. Soil evaporation represented 7% to 16% of the total ET and more than 70% of precipitation and irrigation water was used by cotton plants. Spatial variations of soil lithology, water table depth and initial soil water content led to the spatial differences of GR and ET in the MRB. Our study indicated that bromide tracer tests are useful for inferring ET in the arid and semi-arid oases. The combination of bromide tracer tests and HYDRUS-1D enhances reliability for estimation of GR and ET under film-mulched drip irrigation in the MRB and shows promise for other similar arid inland basins around the world.
机译:准确估计地下水补给(GR)和蒸发散热(ET)对于地下水资源的可持续管理至关重要,特别是在干旱和半干旱地区。在玛纳斯河流域(MRB)中,缺水是限制灌溉农业可持续发展的主要因素,这依赖于地下水。薄膜覆盖的滴灌灌溉显着改变了不饱和区中水流的模式和主导过程,这增加了GR和ET估计的难度。在MRB中更好地估计GR和ET,在MRB中的薄膜覆盖滴灌,在12个代表性位点进行溴化物示踪试验和土壤岩性调查。使用从溴化物示踪试验中推断的土壤蒸发数据在每个部位校准一维可变饱和流模型(Hydrus-1d)。结果表明,由溴化物痕量试验计算的未开垦土地中的平均年度土壤蒸发为25.55毫米。在薄膜浸泡灌水下,每年的GR均为5.5至37.0毫米。年度ET从507.0到747.1毫米范围,土壤蒸发在35.7和117.0毫米之间,蒸腾在460.9和642.3毫米之间。土壤蒸发占ET总量的7%至16%,棉植物使用了超过70%的沉淀和灌溉水。土壤岩性,水台深度和初始土壤含水量的空间变化导致MRB中GR和ET的空间差异。我们的研究表明,溴化物示踪试验对于在干旱和半干旱果岭中推断等。溴化物示踪试验和氢气-1D的组合增强了MRB中薄膜覆盖滴灌的GR和ET的可靠性,并显示了世界各地其他类似的干旱内陆盆地的承诺。

著录项

  • 来源
    《Hydrological Processes》 |2021年第7期|e14290.1-e14290.14|共14页
  • 作者单位

    China Univ Geosci Sch Environm Studies Wuhan 430078 Peoples R China|China Univ Geosci State Key Lab Biogeol & Environm Geol Wuhan 430078 Peoples R China;

    Three Gorges Geotech Engn Co Ltd Wuhan Peoples R China;

    China Univ Geosci Sch Environm Studies Wuhan 430078 Peoples R China|China Univ Geosci State Key Lab Biogeol & Environm Geol Wuhan 430078 Peoples R China;

    China Univ Geosci Sch Environm Studies Wuhan 430078 Peoples R China|China Univ Geosci State Key Lab Biogeol & Environm Geol Wuhan 430078 Peoples R China;

    China Univ Geosci Sch Environm Studies Wuhan 430078 Peoples R China|China Univ Geosci State Key Lab Biogeol & Environm Geol Wuhan 430078 Peoples R China|China Univ Geosci Hubei Key Lab Wetland Evolut & Ecol Restorat Wuhan Peoples R China;

    Chengdu Univ Technol Coll Environm & Civil Engn Chengdu Peoples R China;

    Univ Arizona Dept Hydrol & Atmospher Sci Tucson AZ USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    evapotranspiration; groundwater recharge; Manas River Basin; Northwest China; tracer tests; variably saturated flow model;

    机译:蒸散;地下水充电;玛纳斯河流域;中国西北;示踪剂测试;可变饱和流模型;

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