Page 219 - 《高原气象》2025年第5期
P. 219

5 期                      车宗玺等:水热要素对祁连山青海云杉水源涵养功能影响                                         1337
                  function variation in Heilongjiang Province from a geospatial per‐  cess  of  Ruoergai Wetland[J]. Acta  Ecologica  Sinica,  31(19):
                  spective[J]. Acta Ecologica Sinica, 43(7): 2711-272. DOI: 10.  5780-5788. DOI: 10. 20103/j. stxb. 2011. 19. 042.
                  5846/stxb202202090327.                         谢展, 李萍, 刘文倩, 等, 2024. 气候变化和植被恢复对黄土高原水
               王耕, 韩冬雪, 2018. 基于 InVEST模型的大凌河上游汇水区水源涵               源涵养功能时空变化的影响[J]. 生态学报, 44(23): 10915-
                  养功能评估[J]. 水土保持通报, 38(3): 206-211. Wang G,         10935. DOI: 10. 20103/j. stxb. 202404300979. Xie Z, Li P, Liu
                  Han D X, 2018. Assessment of water source conservation func‐  W Q, et al, 2024. Spatial and temporal changes in water conser‐
                  tion in the upper watershed of the Daling River based on the In‐  vation in the Loess Plateau under the influence of climate change
                  VEST  Model[J]. Bulletin  of  Soil  and  Water  Conservation,  38  and  vegetation  restoration[J]. Acta  Ecologica  Sinica,  44(23):
                 (3): 206-211.                                      10915-10935. DOI: 10. 20103/j. stxb. 202404300979.
               王辉源, 宋进喜, 吴琼, 等, 2023. 未来气候及土地利用变化对水源             杨洁, 谢保鹏, 张德罡, 等, 2020. 基于 InVEST 模型的黄河流域产
                  涵养量的影响[J]. 水土保持学报, 37(5): 226-234. Wang H         水量时空变化及其对降水和土地利用变化的响应[J]. 应用生
                  Y, Song J X, Wu Q, et al, 2023. Impact of future climate and   态 学 报 ,  31(8):  2731-2739. DOI:  10. 13287/j. 1001-9332.
                  land use changes on water source conservation[J]. Journal of Soil   202008. 015. Yang J, Xie B P, Zhang D G, et al, 2020. Spatio-
                  and Water Conservation, 37(5): 226-234.           temporal variation of water yield and its response to precipitation
               王金叶, 2008. 森林生态水文过程研究[M]. 北京: 科学出版社 .                and land use change in the Yellow River Basin based on InVEST
                  Wang  J  Y,  2008. Research  on  forest  ecohydrological  processes  model[J]. Applied  Ecology,  31(8):  2731-2739. DOI:  10.
                 [M]. Beijing: Science Press.                       13287/j. 1001-9332. 202008. 015.
               王晓学, 沈会涛, 李叙勇, 等, 2012. 森林水源涵养功能的多尺度内涵、           苑跃, 张亮, 崔林林, 等, 2020. 若尔盖高原生态系统水源涵养功能
                  过程及计量方法[J]. 生态学报, 33(4): 1019-1030. DOI: 10.      时空变化特征[J]. 生态学杂志, 39(8): 2713-2723. DOI: 10.
                  5846/stxb201206130852. Wang X X, Shen H T, Li X Y, et al,   13292/j. 1000-4890. 202008. 027. Yuan Y,  Zhang  L,  Cui  L  L,
                  2012. Multi-scale connotation, process and measurement methods   et al, 2020. Temporal and spatial variation characteristics of wa‐
                  of forest water source conservation function[J]. Acta Ecologica Si‐  ter source conservation function of the Ruoergai Plateau Ecosys‐
                  nica, 33(4): 1019-1030. DOI: 10. 5846/stxb201206130852.  tem[J]. Chinese Journal of Ecology, 39(8): 2713-2723. DOI:
               王玉纯, 赵军, 付杰文, 等, 2018. 石羊河流域水源涵养功能定量评                10. 13292/j. 1000-4890. 202008. 027.
                  估及空间差异[J]. 生态学报, 38(13): 4637-4648. DOI: 10.   张薇, 朱睿, 杨华庆, 等, 2025. 基于 PLUS-InVEST 模型的黄河水
                  5846/stxb201707041204. Wang  Y  C,  Zhao  J,  Fu  J  W,  et  al,   源涵养区碳储量时空演变分析及模拟预测[J]. 高原气象, 44
                  2018. Quantitative  assessment  and  spatial  differences  of  water   (2): 362-377. DOI: 10. 7522/j. issn. 1000-0534. 2024. 00081.
                  source conservation function in the Shiyang River Basin[J]. Acta   Zhang W, Zhu R, Yang H Q, et al, 2025. Analysis and simula‐
                  Ecologica  Sinica,  38 (13) :  4637-4648. DOI:  10. 5846/  tion  prediction  of  the  temporal  and  spatial  evolution  of  carbon
                  stxb201707041204.                                 storage in the Yellow River water source conservation area based
               王云飞, 叶爱中, 乔飞, 等, 2021. 水源涵养内涵及估算方法综述                 on the PLUS-InVEST Model[J]. Plateau Meteorology, 44(2):
                 [J]. 南水北调与水利科技(中英文), 19(6): 1041-1071. Wang        362-377. DOI: 10. 7522/j. issn. 1000-0534. 2024. 00081.
                  Y F, Ye A Z, Qiao F, et al, 2021. A review of the connotation   张子涵, 王学佳, 杨梅学, 等, 2023. 黄河上游水源涵养区近 60 年
                  and estimation methods of water source conservation[J]. South-  关键气候要素的时空变化[J]. 高原气象, 42(6): 1372-1385.
                  to-North Water Diversion and Water Science & Technology (Bi‐  DOI:  10. 7522/j. issn. 1000-0534. 2023. 00011. Zhang  Z  H,
                  lingual), 19(6): 1041-1071.                       Wang X J, Yang M X, et al, 2023. Spatial and temporal changes
               熊远清, 吴鹏飞, 张洪芝, 等, 2011. 若尔盖湿地退化过程中土壤水                of key climate elements in the water source conservation area of
                  源 涵 养 功 能[J]. 生 态 学 报 , 31(19): 5780-5788. DOI: 10.  the upper Yellow River in the past 60 years[J]. Plateau Meteorol‐
                  20103/j. stxb. 2011. 19. 042. Xiong Y Q, Wu P F, Zhang H Z, et   ogy,  42(6):  1372-1385. DOI:  10. 7522/j. issn. 1000-0534.
                  al, 2011. Soil water conservation function in the degradation pro‐  2023. 00011.
   214   215   216   217   218   219   220   221   222   223   224