首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effects of Cryospheric Change on Alpine Hydrology: Combining a Model With Observations in the Upper Reaches of the Hei River, China
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Effects of Cryospheric Change on Alpine Hydrology: Combining a Model With Observations in the Upper Reaches of the Hei River, China

机译:低温对高山水文的效果:将模型与中国河河上游观测相结合

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摘要

Cryospheric changes have great effects on alpine hydrology, but these effects are still unclear owing to rare observations and suitable models in the western cold regions of China. Based on long-term field observations in the western cold regions of China, a cryospheric basin hydrological model was proposed to evaluate the cryospheric effects on streamflow in the upper Hei River basin (UHR), and the relationship between the cryosphere and streamflow was further discussed with measured data. The Norwegian Earth System Model outputs were chosen to project future streamflow under scenarios Representative Concentration Pathways (RCP)2.6, RCP4.5, and RCP8.5. The cryospheric basin hydrological model results were well validated by the measured precipitation, streamflow, evapotranspiration, soil temperature, glacier and snow cover area, and the water balance of land cover in the UHR. The moraine-talus region contributed most of the runoff (60%), even though it made up only about 20% of the area. On average, glacier and snow cover, respectively, contributed 3.5% and 25.4% of the fresh water to the streamflow in the UHR between 1960 and 2013. Because of the increased air temperature (2.9°C/54a) and precipitation (69.2 mm/54a) over the past 54 years, glacial and snowmelt runoff increased by 9.8% and 12.1%, respectively. The increase in air temperature brought forward the snowmelt flood peak and increased the winter flow due to permafrost degradation. Glaciers may disappear in the near future because of their small size, but snowmelt would increase due to increases in snowfall in the higher mountainous areas, and the basin runoff would increase slightly in the future.
机译:低温散对变化对高山水文具有很大的影响,但由于中国寒冷地区的罕见观察和适当的模型,这些效果仍然不清楚。基于中国西部寒冷地区的长期田间观察,提出了一种低温盆盆地水文模型,以评估毛河盆地(UHR)中流出的低温效果,并进一步讨论了冰区和流流程之间的关系使用测量数据。选择挪威地球系统模型输出在场景中的未来流流程中选择了未来的流流量(RCP)2.6,RCP4.5和RCP8.5。通过测量的沉淀,流出,蒸散,土壤温度,冰川和雪覆盖区域以及UHR中的陆地覆盖的水平衡,验证了低温散流水文模型结果。冰碛 - 塔卢斯地区的大部分径流(60%)贡献,即使它仅占该地区的约20%。平均,冰川和雪覆盖,分别为1960年至2013年间UHR中的淡水3.5%和25.4%的淡水。由于空气温度增加(2.9°C / 54A)和沉淀(69.2毫米/ 54A)在过去的54年里,冰川和雪花径流分别增加了9.8%和12.1%。气温的增加带来了雪花洪峰,并增加了由于多年冻土的降解引起的冬季流量。冰川可能在不久的将来消失,因为它们的体积小,但由于山区的降雪增加,昼夜越来越大,并且盆地径流将来会略有增加。

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  • 作者单位

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

    Qilian Alpine Ecology and Hydrology Research Station Key Laboratory of Ecohydrology of Inland River Basin Northwest Institute of Eco-Environment and Resources Chinese Academy of Sciences Lanzhou China;

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

    Cryospheric Change; Alpine Hydrology; Combining;

    机译:低温逆变;高山水文;结合;

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