西北大学 城市与环境学院,陕西,西安,710054
纸质出版:2014
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王纪伟, 刘康, 瓮耐义. 基于In-VEST模型的汉江上游森林生态系统水源涵养服务功能研究[J]. 水土保持通报, 2014,33(5):213-217.
WANG Ji-wei, LIU Kang, WENG Nai-yi. Research on Water Conservation Service Function of Forest Ecological System in Upstream of Hanjiang River Based on In-VEST Model[J]. Bulletin of Soiland Water Conservation, 2014, 33(5): 213-217.
王纪伟, 刘康, 瓮耐义. 基于In-VEST模型的汉江上游森林生态系统水源涵养服务功能研究[J]. 水土保持通报, 2014,33(5):213-217. DOI: 10.13961/j.cnki.stbctb.2014.05.046.
WANG Ji-wei, LIU Kang, WENG Nai-yi. Research on Water Conservation Service Function of Forest Ecological System in Upstream of Hanjiang River Based on In-VEST Model[J]. Bulletin of Soiland Water Conservation, 2014, 33(5): 213-217. DOI: 10.13961/j.cnki.stbctb.2014.05.046.
生态系统服务功能及变化是生态系统评估的核心
是生态学、环境经济学等领域的研究热点。汉江上游秦巴山地是中国重要的水源涵养和供给功能区。近年来
受自然与人为双重驱动因子影响
森林生态系统出现退化现象
水源涵养及供给能力受到一定影响。以汉江上游流域森林景观为研究对象
运用In-VEST模型水源涵养模块对其水源涵养功能进行动态变化分析。结果表明
汉江上游森林生态系统水源涵养总量为1.21×10
14
m
3
最大涵养水源深度为362.51 mm
平均水源涵养深度为80.69 mm。在各森林景观中
常绿阔叶林水源函养量最大
乔木园地最小。在空间上
南北秦巴山地地区水源涵养量较大
水源涵养服务功能明显。
Ecosystem service function is the core of ecosystem evaluation and research hotspot of ecology/environmental economics. Qinling-Bashan Mountains which lies to the upstream of the Hanjiang River is one of the important water supplying and conserving area for China. In recent years
the degradation of forest ecosystem and the capacity of water supplying and conserving in the area have been restricted by both of the natural and human being factors. The dynamic changes of water conservation founction in the Upper Hanjiang River were analyzed by making use of In-VEST model. The results showed that the amount of water conservation of forest ecosystem in the upstream of Hanjiang River was 120.79×1014 m3 meters
The maximum depth of water conservation was 362.51 millimetres
the average depth of water conservation was 80.69 millimetre. The water conservation evergreen broad-leaved forest was the largest compared with other forest landscape
and the tree garden was the least. From the perspective of space
the amount of water conservation in north and south of Qinlig-Bashan Mountains area was larger
and water conservation function was obvious.
李文华.生态系统服务研究是生态系统评估的核心[J].资源科学,2006,28(4):4.
欧阳志云,郑华.生态系统服务的生态学机制研究进展[J].生态学报,2009,29(11):6183-6188.
姜文来.森林涵养水源的价值核算研究[J].水土保持学报,2003,17(2):34-36
高成德,余新晓.水源涵养林研究综述[J].北京林业大学学报,2000,22(5):78-81.
邓坤枚,石培礼,谢高地.长江上游森林生态系统水源涵养量与价值的研究[J].资源科学,2002,24(6):68-73.
康艳.秦岭山地植被水源涵养功能空间分布格局及生态保育策略[D].西安:西北大学,2005.
李思悦,刘文治,顾胜.南水北调中线水源地汉江上游流域主要生态环境问题及对策[J].长江流域资源与环境, 2009,18(3):275-280.
赵红莉,陈宁,蒋云钟,等.汉江上游水资源时空演变及成因分析[J].南水北调与水利科技,2009,7(6) 90-94.
胡芳.南水北调中线陕西段水源区水质保护与生态补偿研究[D].西安:西安理工大学,2009.
刘纪远,张增祥,庄大方,等.20世纪90年代中国土地利用变化的遥感时空信息研究[M].北京:科学出版社,2005.
余新晓,周彬,吕锡芝,等.基于In-VEST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.
潘韬,吴绍洪,戴尔阜,等.基于In-VEST模型的三江源区生态系统水源供给服务时空变化[J].应用生态学报,2013,24(1):183-189.
Boumans R, Costanza R, Farley J, et al. Modeling the dynamics of the integrated earth system and the value of global ecosystem services using the GUMBO model[J].Ecological Economics, 2002,41(2):529-560.
Tallis H T, Ricketts T, Guerry A D, et al. In-VEST 2.1 Beta User's Guide:Integrated valuation of ecosystem services and Tradeaffs[M].Natural Capital Project Stanford, 2011:260.
白杨,郑华,庄长伟,等.白洋淀流域生态系统服务评估及其调控[J].生态学报,2013,33(3):711-717.
秦嘉励,杨万勤,张健.岷江上游典型生态系统水源涵养量及价值评估[J].应用与环境生物学报,2009,15(4):453-458.
刘晓清,张振文,沈炳岗.秦岭生态功能区森林水源涵养功能的经济价值估算[J].水土保持通报,2010,32(1):177-180.
马雪华.森林水文学[M].北京:中国林业出版社,1993.
Hewlett J D. Prine Piles of Forest Hydrology[M]. Aihens, GA:University of Geogria Perss, 1982.
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