土地覆被变化对径流量影响的GSAC模型分析
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国家自然科学基金青年科学基金项目(51109037)、农业部农业水资源高效利用重点实验室开放课题项目(2015001、2015003)和黑龙江教育厅科学技术研究项目(12531051)


Impacts of Land Cover Change on Runoff Based on Grid-based Sacramento Model
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    摘要:

    针对我国高寒区水文模型研究中基础数据缺乏、现有数据时空分辨率不高、蒸散发和积雪融雪难于定量计算等问题,选择基于栅格的萨克拉门托(GSAC)模型,通过设定不同的土地覆被变化情景,定量分析土地覆被变化对径流量的影响,并推求了宝清站枯水期流量。结果表明:率定参数后的GSAC模型在模拟位于寒区的宝清河流域日流量过程中,率定期和验证期的决定系数平均值为0.7329,较好地再现了该流域1997—2001年逐日的流量过程;退耕还草、还林均会引起年径流量的增大,增幅在3.09%~44.85%之间,且退耕还草对流量的影响更大;退耕还草、还林的坡度与流域出口断面的流量具有负相关性,即坡度越小,流量越大;坡度超过15°的耕地还草后的平均流量与该区域的生态需水量最为接近。

    Abstract:

    In cold region of China, problems exist in the study of hydrological models, including lack of basic data, low spatial and temporal resolution of available data and the difficulty of quantitative calculating evapotranspiration, snow cover and snow melting. In response, grid-based Sacramento (GSAC) model was selected, different land cover change scenarios were set, effects of land cover change on runoff were analyzed quantitatively, and runoff in dry season was predicted. Results showed that in simulating the daily runoff of Baoqing River Watershed in cold region with model which had parameters calibrated, the average determination coefficient was 0.7329 during the periods of calibration and validation, which well reproduced the daily runoff of this watershed during 1997—2001;returning farmland to grassland or forest can both increase the annual runoff, with the growth rate between 3.09% and 44.85%, and the growth rate of returning farmland to grassland had more influence on runoff;the steepness of land returned to grassland or forest had negative correlation with the runoff at the watershed export section, i.e., the smaller the slope was, the greater the flow was;the average runoff of farmland with steepness over 15° after being returned to grassland was similar with the ecological water demand in this area.

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白雪峰,王斌,戚颖.土地覆被变化对径流量影响的GSAC模型分析[J].农业机械学报,2017,48(7):257-264. BAI Xuefeng, WANG Bin, QI Ying. Impacts of Land Cover Change on Runoff Based on Grid-based Sacramento Model[J]. Transactions of the Chinese Society for Agricultural Machinery,2017,48(7):257-264.

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  • 收稿日期:2016-10-26
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  • 在线发布日期: 2017-07-10
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