1. 河海大学水文水资源学院,南京,210098
2. 河海大学水安全与水科学协同创新中心,南京,210098
3. 长江保护与绿色发展研究院,南京,210098
4. 南京水利科学研究院水文水资源与水利工程科学国家重点实验室,南京,210029
[ "贾雨凡(2000—),女,硕士研究生,主要从事水文水资源方面的研究。E-mail:Jyf20000509@163.com" ]
纸质出版:2023
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贾雨凡, 王国庆. 基于InVEST模型的伊洛河流域水源涵养能力评估[J]. 水土保持学报, 2023,37(3):101-108.
JIA Yufan, WANG Guoqing. Assessment of Water Conservation Capacity of Yiluo River Basin Based on the InVEST Model[J]. 2023, 37(3): 101-108.
贾雨凡, 王国庆. 基于InVEST模型的伊洛河流域水源涵养能力评估[J]. 水土保持学报, 2023,37(3):101-108. DOI: 10.13870/j.cnki.stbcxb.2023.03.014.
JIA Yufan, WANG Guoqing. Assessment of Water Conservation Capacity of Yiluo River Basin Based on the InVEST Model[J]. 2023, 37(3): 101-108. DOI: 10.13870/j.cnki.stbcxb.2023.03.014.
水源涵养是生态系统最重要的服务功能之一
黄河流域生态保护和高质量发展规划纲要强调聚焦重点区域
恢复重要生态系统
对强化水源涵养能力提出了新的要求。收集并分析伊洛河流域1975-2019年的气象及下垫面资料
采用InVEST模型产水模块计算1975-2019年伊洛河流域每5年1期共9个时段的产水量
采用流速系数、土壤饱和导水率等对产水量进行修正
估算流域的水源涵养量
具体分析伊洛河流域降水、产水与水源涵养的特征及其相关关系。结果表明:1975-2019年
伊洛河流域多年平均水源涵养量为11.3 mm
多年平均产水量为143.2 mm
产水量及水源涵养量整体呈现先增后减的变化趋势
在1980-1984年达到峰值;流域水源涵养能力空间分布特征为上游植被丰富、土石山区水源涵养能力强
中下游相对较弱;对流域气象要素单相关及复相关分析
水源涵养能力与降水显著正相关
与参考作物蒸散发相关性不显著;流域内土地利用变化在一定程度上影响水源涵养能力空间分布
上游水源涵养高值区及退耕还林还草区受影响显著。研究结果可为相似流域水源涵养能力的评估提供参考。
Water conservation is one of the most important service functions of the ecosystem
and the outline of the Yellow River Basin Ecological Protection and High-quality Development Plan emphasizes focusing on key areas and restoring important ecosystems
which puts forward new requirements for strengthening water conservation capacity. We collected and analyzed meteorological and subsurface data of the Yiluo River basin from 1975 to 2019
calculated the water yield of the basin for a total of nine time periods in every five-year period during 1975 to 2019 using the water yield module of the InVEST model
and the water conservation was obtained by using the flow rate coefficient and soil saturation conductivity to correct the water yield. This study specifically analyzed the characteristics and correlations between precipitation
water yield and water conservation in the Yiluo River Basin.The results show that from 1975 to 2019
the annual average water conservation in the Yiluo River Basin is 11.3 mm
and the annual average water yield is 143.2 mm
and the overall water yield and water conservation show a trend of first increasing and then decreasing
reaching a peak from 1980 to 1984. The spatial distribution of water conservation capacity in the river basin is characterized by abundant vegetation in the upstream and strong water conservation capacity in mountainous areas of earth and rock
while the middle and lower reaches are relatively weak. The results of single-correlation and complex correlation analysis of meteorological elements in the basin show that the water conservation capacity is significantly positively correlated with precipitation
but not with evapotranspiration of reference crops. To a certain extent
the change of land use in the river basin affects the spatial distribution of water conservation capacity
and the areas with high value of water conservation in the upper reaches and the areas where farmland is returned to forest and grassland are significantly affected. The results can provide a reference for the assessment of water conservation capacity in similar river basins.
Innvae S, Vist G, Trommald M, et al. Health policy-makers' perceptions of their use of evidence:A systematic review[J].Journal of Health Services Research and Policy,2002,7(4):239-244.
赵晓涵,张方敏,卢琦,等.未来气候情景内蒙古蒸散和产水量的变化特征[J].水土保持学报,2022,36(4):151-159.
张佳楠,张建军,张海博,等.晋西黄土区典型林分水源涵养能力评价[J].北京林业大学学报,2019,41(8):105-114.
张彪,李文华,谢高地,等.森林生态系统的水源涵养功能及其计量方法[J].生态学杂志,2009,28(3):529-534.
周佳雯,高吉喜,高志球,等.森林生态系统水源涵养服务功能解析[J].生态学报,2018,38(5):1679-1686.
Hu W M, Li G, Gao Z H, et al. Assessment of the impact of the poplar ecological retreat project on water conservation in the Dongting Lake wetland region using the InVEST model[J].Science of the Total Environment,2020,733:e139423.
宫渊波,麻泽龙,陈林武,等.嘉陵江上游低山暴雨区不同水土保持林结构模式水源涵养效益研究[J].水土保持学报,2004,18(3):28-32.
侯晓臣,孙伟,李建贵,等.森林生态系统水源涵养能力计量方法研究进展与展望[J].干旱区资源与环境,2018,32(1):121-127.
李文华,何永涛,杨丽韫.森林对径流影响研究的回顾与展望[J].自然资源学报,2001,16(5):398-406.
王晓学,沈会涛,李叙勇,等.森林水源涵养功能的多尺度内涵、过程及计量方法[J].生态学报,2013,33(4):1019-1030.
贾雨凡,杨勤丽,胡非池,等.变化环境下的水源涵养能力评估研究进展[J].水利水运工程学报,2022(1):37-47.
聂忆黄.基于地表能量平衡与SCS模型的祁连山水源涵养能力研究[J].地学前缘,2010,17(3):269-275.
Redhead J W, Stratford C, Sharps K, et al. Empirical validation of the InVEST water yield ecosystem service model at a national scale[J].Science of the Total Environment,2016,569/570:1418-1426.
Sandholt I, Rasmussen K, Andersen J. A simple interpretation of the surface temperature/vegetation index space for assessment of surface moisture status[J].Remote Sensing of Environment,2002,79(2):213-224.
Arnold J G, Srinivasan R, Muttiah R S, et al. Large area hydrologic modeling and assessment; Part I, Model development[J].Journal of the American Water Resources Association,1998,34(1):73-89.
郭屹立,卢训令,丁圣彦.伊洛河河岸带生态系统草本植物功能群划分[J].生态学报,2012,32(14):4434-4442.
贺瑞敏,王国庆,张建云.环境变化对黄河中游伊洛河流域径流量的影响[J].水土保持研究,2007,14(2):297-298.
胡庆芳,杨大文,王银堂,等.Hargreaves公式的全局校正及适用性评价[J].水科学进展,2011,22(2):160-167.
国家地球系统科学数据中心.国家科技基础条件平台[R/OL].(2022-12-02)http://www.geodata.cn.
周文佐.基于GIS的我国主要土壤类型土壤有效含水量研究[D].南京:南京农业大学,2003.
Zhang L, Hickel K, Dawes W R, et al. A rational function approach for estimating mean annual evapotranspiration[J].Water Resources Research,2004,40(2):1-14.
余新晓,周彬,吕锡芝,等.基于InVEST模型的北京山区森林水源涵养功能评估[J].林业科学,2012,48(10):1-5.
Allen R G. Crop evapotranspiration-Guidelines for computing crop water requirements-FAO Irrigation and drainage paper 56[M].Rome:FAO-Food and Agriculture Organization of the United Nations,1998.
Cosby B J, Hornberger G M, Clapp R B, et al. A statistical exploration of the relationships of soil moisture characteristics to the physical properties of soils[J].Water Resources Research,1984,20(6):682-690.
顾铮鸣,金晓斌,沈春竹,等.近15年江苏省水源涵养功能时空变化与影响因素探析[J].长江流域资源与环境,2018,27(11):2453-2462.
刘树锋,陈记臣,关帅,等.基于InVEST模型的未来土地利用变化对水源涵养功能的影响:以杨溪河流域为例[J].安徽农业科学,2020,48(15):67-70.
刘宥延,刘兴元,张博,等.基于InVEST模型的黄土高原丘陵区水源涵养功能空间特征分析[J].生态学报,2020,40(17):6161-6170.
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