[1]习近平在参加首都义务植树活动时强调:全社会都做生态文明
建设的实践者推动者让祖国天更蓝山更绿水更清生态环境更
美好[N].人民日报,2022-03-31(01).
[2]马振勇,郑子宁,赵何冰,等。水生态环境保护的水文学基础
[C].河海大学,珠江水利委员会珠江水利科学研究院,中国
疏浚协会,广东省水利水电科学研究院,广东省水利学会
2023(第十一届)中国水生态大会论文集。黄河水利委员会水
文局,2023:11.
[3]陈杰,罗贤字,黄登良。习近平关于森林“四库”的重要论
述:生成机理、实践指向与重大意义[J].福建农林大学学报
(哲学社会科学版),2023,26(02):8-14,64.
[4]Gao L,Tao B,Miao Y,et al.A global data set for economic los-
ses of extreme hydrological events during 1960-2014 [J].Water
Resources Research,2019,55 (6):5165-5175.
[5]Kreibich H,Van Loon A F,Schroter K,et al.The challenge of
unprecedented floods and droughts in risk management J].Na-
ture,2022,608(7921):80-86.
[6]Wang Q,Cai X,Tang J,et al.Climate feedbacks associated with
land-use and land-cover change on hydrological extremes over the
Yangtze River Delta Region,China [J].Joumal of Hydrology,
2023,623:129855.[7]高红凯,刘俊国,高光耀,等.水源涵养功能概念的生态和水
文视角辨析[J].地理学报,2023,78(01):139-148.
[8]邓雅丽,赵新字,崔自杰,等。中国森林生态系统林冠层降雨
截留特征[J].生态学报,2024,44(07):2981-2992
[9]Liu Y,Shi W,Tao F,et al.A global synthesis of multi-factorsaf-
fecting water storage capacity in forest canopy,litter and soil layers
[J].Geophysical Research Letters,2023,50 (3).
[10]Levia D F,Germer S.A review of stemflow generation dynamics
and stemflow-environment interactions in forests and shrublands
[J].Reviews of Geophysics,2015,53 (3):673-714.
[11]肖洋,张淑兰,宋国华.森林冠层影响降雪截留过程的研究
进展[J].水科学进展,2017,28(03):462-471.
[12]Lian X,Zhao W,Gentine P.Recent global decline in rainfall in-
terception loss due to altered rainfall regimes [J].Nature Commu-
ications,2022,13(1):7642.
13]Sadeghi S MM,Gordon D A,Van Stan li J T.A global synthesis
of throughfall and stemflow hydrometeorology [J ]Precipitation
partitioning by vegetation:A global synthesis,2020:49-70.
[14]马孟良,李强,王疆尧,等.中国旱区森林生态系统的林冠
截留综述[J].西北林学院学报,2024,39(05):1-13.
15]Magliano P N,Whitworth-Hulse J I,Cid F D,et al.Global
rainfall partitioning by dryland vegetation:Developing general em-
pirical models [J].Journal of Hydrology,2022,607:127540.
[16]Li Y,Liang Y,Wei T,et al.Spatiotemporal dynamics ofrainfall
interception and effective precipitation in the Loess Plateau after
large-scale afforestation [J].Land Degradation Development,
2023,34(16):5004-5016.
[17]Wei Z,Yoshimura K,Wang L,et al.Revisiting the contribution
of transpiration to global terrestrial evapotranspiration [J].Geo-
physical Research Letters,2017,44 (6):2792-2801.[18]朱永杰,毕华兴,霰云梅,等。草冠截留影响因素及其测定
方法对比研究综述[J].中国农学通报,2014,30(34):
117-122.
[19]杨全。黄土丘陵区典型草地群落冠层降雨截留容量特征及其
影响因素[D].北京:中国科学院大学(中国科学院教育部
水土保持与生态环境研究中心),2020.
[20]吕爱锋,王蕾,曲波.我国植被冠层降水截留研究进展[J]
南水北调与水利科技(中英文),2022,20(04):724-736.
[21]张新生,卢杰.森林水文模型的研究进展[J].黑龙江农业
科学,2021(08):129-136.
[22]孙梓欣,朱连奇,赵体侠,等.秦巴山地植被冠层降雨裁留
时空分异特征及驱动因素[J].生态学报,2024,44(05):
2029-2042.
[23]Wang H,Zhao C,Liu Y,et al.Exploring the spatiotemporal
distribution and driving factors of vegetation canopy rainfallinter-
ception in the Qilian Mountains,Northwest China J.Catena,
2024,237:107829.
[24]Linhoss A C,Siegert C M.A comparison of five forest interception
models using global sensitivity and uncertainty analysis [J].Jour-
nal of Hydrology,2016,538:109-116.
[25]Astuti H P,Suryatmojo H.Water in the forest:rain-vegetation
interaction to estimate canopy interception in a tropical borneo rain-forest [J].IOP Conference Series:Earth and Environmental Sci-
cmce,2019,361(1):12035.
[26]Momiyama H,Kumagai T,Fujime N,et al.Forest canopy in-
terception can reduce flood discharge:Inferences from model assump-
tion analysis [J].Journal of Hydrology,2023,623:129843.
[27]Jiang M H,Lin T C,Shaner P J L,et al.Understory intercep-
tion contributed to the convergence of surface runoff between a Chi-
nese fir plantation and a secondary broadleaf forest [J].Joumal of
Hydrology,2019,574:862-871.
[28]Li X,Niu J,Xie B.The effect of leaf litter cover on surface run-
off and soil erosion in Northern China [J].PloS one,2014,9
(9):107789.
[29]Xia L,Song X,Fu N,et al.Effects of forest litter cover on-
hydrological response of hillslopes in the Loess Plateau of China
[J].Catena,2019,181:104076.
[30]Zhao L,Hou R,Fang Q.Differences in interception storage ca-
pacities of undecomposed broad-leaf and needle-leaf litter under
simulated rainfall conditions J ]Forest Ecology and Manage-
menl,2019,446:135-142.
[31]王平,李璐杉,丁智强,等.滇中地区主要森林凋落物有效
截留量及其影响因素[J].水土保持研究,2024,31(03):
213-221,229.
[32]余恩旭,刘世荣,张明芳,等。林分-流域森林调落物持水能
力的空间尺度上推模型构建一以河南宝天曼蛮子庄流域为
例[J].生态学报,2025(02):1-12.
[33]Zhang G,Xie H,Yao T,et al.Quantitative water resources as-
sessment of Qinghai Lake basin using Snowmelt Runoff Model
(SRM)[J].Journal of Hydrology,2014,519:976-987.
[34]Sankey T,Donald J,Me Vay J,et al.Multi-scale analysis of
snow dynamics at the southern margin of the North American conti-
nental snow distribution [J ]Remote Sensing of Environment,
2015,169:307-319.[35]Snauffer A M,Hsieh WW,Cannon A J.Comparison of gridded
snow water equivalent products with in situ measurements in British
Columbia,Canada [J].Joumal ofHydrology,2016,541:714
-726.
[36]阿卜杜外力·阿卜杜克热木,安外尔·阿卜杜热伊木,肖正
清,等。基于无人机影像的天山雪岭云衫树冠降雪截留实脸
研究[J].干早区资源与环境,2022,36(04):163-170.
[37]Moeser D,Stahli M,Jonas T.Improved snow interception model-
ing using canopy parameters derived from airborne L i DAR data
[J].Water Resources Research,2015,51 (7)5041-5059.
[38]肖洋,张淑兰,张海军,等.小兴安岭红松林冠层裁留降雪
特征及模拟[J].林业科学,2021,57(07):11-19.
[39]Moeser D,Mazzotti G,Helbig N,et al.Representing spatial
variability of forest snow:Implementation of a new interception
model [J].Water Resources Research,2016,52 (2):1208-
1226
[40]Roth T R,Nolin A W.Characterizing maritime snow canopy inter-
ception in forested mountains J ]Water Resources Research,
2019,55(6):4564-4581.
[41]张晓茹,刘志强,焦钒相,等。雨滴击溅下表土孔隙变化及其对入渗能力的影响[J].土壤,2024,56(03):601-609.
[42]张贤林,冯梦蝶,何丙辉,等。喀斯特槽谷区不同土地利用
方式下土壤入渗特征及适宜模型[J].水土保持研究,2024,
31(04):34-41.
[43]乔文英,安琪琪,常小峰,等。黄土高原草地灌丛化对潜在
植被截留和土壤蓄水能力的影响[J].水土保持通报,2022,
42(01):69-76.
[44]李强,何国兴,刘志刚,等。东祁连山高寒草甸土壤“固-液
一气”三相组成对海拔和坡向的响应[J].水土保持学报,
2022,36(03):195-200,206.
[45]袁杰,曹广超,曹生奎,等。祁连山南坡微地形下典型生态
系统土壤蓄水能力差异[J].水土保持研究,224,31(01):
159-167,177.
[46]胡彩虹,许营营,郑钊,等。基于山区地表空间异质性的产
流计算研究[J/0L].人民长江,1-17[2024-12-3].hp:/
kns.enki.net/kems/detail/42.1202.TV.20241029.1045.002.
html.
[47]童晓霞,崔远来,邵东国,等.山区陡坡坡面产流产沙过程
的降雨试验研究[J].水力发电学报,2024,43(11):71-
80.
[48]党晓宏,徐立杰,高永,等。采煤沉陷对地表土壤蒸发和植
被蒸腾的影响[J].应用基础与工程科学学报,202,30(06):
1389-1401.
[49]赵晓春.贺兰山典型森林类型调落物层水文效应研究[D].
咸阳:西北农林科技大学,2011.
[50]李开凤.不同叶形调落物层持水能力及其影响因素研究[D]
贵阳:贵州大学,2021.
[51]代奉林.广西中亚热带四种典型灌丛群落调落物层与土壤层
的水分涵养特性[D].宜昌:三峡大学,2022
[52]Huang T,Liu Y,Wu Z,et al.Quantitative analysis of runoff al-
teration based on the Budyko model with time-varying underlying
surface parameters for the Wuding River Basin,Loess Plateau
[J].Ecological Indicators,2024,158:111377.
[53]刘效东,刘佩伶,戴雨航,等。森林与径流关系研究进展[J]·
林业科学,2019,55(07):155-162.
[54]Gao H,Hrachowitz M,Schymanski S J,et al.Climate controls
how ecosystems size the root zone storage capacity at catchment
scale[J].Geophysical Research Letters,2014,41 22 )
7916-7923.
[55]Wang-Erlandsson L,Bastiaanssen W G M,Gao H,et al.Glob-
al root zone storage capacity from satellite-based evaporation [J].
Hydrology and Earth System Sciences,2016,20 (4):1459-
1481.
[56]Luo W,Li Y,Yang Z,et al.Water and Nitrogen Balance under
Various Water and Fertilizer Regulation Modes J.Agronomy,
2023,13(12):2870. |