Page 118 - 2021年第52卷第9期
P. 118
sin,Northwestern China[J]. Environmental Earth Sciences,2010,61:1123-1134 .
18
[ 23] GAO J,RISI C,MASSON-DELMOTTE V,et al . Southern Tibetan Plateau ice core δ O reflects abrupt shifts in
atmospheric circulation in the late 1970s[J]. Climate Dynamics,2016,46(1/2):291-302 .
[ 24] RAO W B,ZHANG W B,YONG B,et al . Identifying the source of atmospheric moisture over arid deserts using
2 18
stable isotopes( H and O)in precipitation[J]. Hydrological Processes,2018,32(3):436-449 .
[ 25] 曾思栋,夏军,杜鸿,等 . 生态水文双向耦合模型的研发与应用:Ⅰ模型原理与方法 . 水利学报,2021,51
(1):33-43 .
[ 26] SU T,ZHANG B,HE X,et al . Rational planning of land use can maintain water yield without damaging ecologi⁃
cal stability in upstream of inland river: case study in the Hei River Basin of China[J]. Journal of Geophysical Re⁃
search,2020,125(18):e2020JD032727 .
[ 27] WANG X J,ZHANG B Q,XU X F,et al . Regional water-energy cycle response to land use/cover change in the
agro-pastoral ecotone,northwest China[J]. Journal of Hydrology,2020,580:124426 .
[ 28] 李丽琴,王志璋,贺华翔,等 . 基于生态水文阈值调控的内陆干旱区水资源多维均衡配置研究 . 2019,50
(3):377-387 .
[ 29] 孙存熠 . 格尔木地区同位素水文地质[J]. 青海地质,1991(1):26-31 .
[ 30] 李 健 ,王 辉 ,魏 丽 琼 . 格 尔 木 河 流 域 平 原 区 地 下 水 同 位 素 及 水 化 学 特 征[J]. 西 北 地 质 ,2007,40(4):
94-100 .
[ 31] 徐威 . 那棱格勒河冲洪积平原地下水循环模式及其对人类活动的响应研究[D]. 长春:吉林大学,2015 .
[ 32] 刘玉芝,吴楚樵,贾瑞,等 . 大气环流对中东亚干旱半干旱区气候影响研究进展[J]. 中国科学(D 辑),
2018,48(9):1141-1152 .
[ 33] 李燕燕 . 青藏高原旱、雪灾特征及其与大气环流的关联性探究[D]. 西宁:青海师范大学,2020 .
[ 34] STEIN A F,DRAXLER R R,ROLPH G D,et al . NOAA's HYSPLIT atmospheric transport and dispersion mod⁃
eling system[J]. Bulletin of the American Meteorological Society,2015,96(12):2059-2077 .
[ 35] WANG S,ZHANG M,CRAWFORD J,et al . The effect of moisture source and synoptic conditions on precipita⁃
tion isotopes in arid central Asia[J]. Journal of Geophysical Research:Atmospheres,2017,122(5):2667-2682 .
[ 36] ARAGUÁS-ARAGUÁS L,FROEHLICH K,ROZANSKI K . Stable isotope composition of precipitation over
southeast Asia[J]. Journal of Geophysical Research,1998,103(D22):28721-28742 .
[ 37] CRAIG H . Isotopic variations in meteoric waters[J]. Science,1961,133(3465):1702-1703 .
[ 38] YANG Y Z,WU Q B,JIN H J . Evolutions of water stable isotopes and the contributions of cryosphere to the al⁃
pine river on the Tibetan Plateau[J]. Environmental Earth Sciences,2016,75(49):1-11 .
18
[ 39] YU W,YAO T,TIAN L,et al . Relationships between δ O in precipitation and air temperature and moisture ori⁃
gin on a south-north transect of the Tibetan Plateau[J]. Atmospheric Research,2008,87(2):158-169 .
[ 40] TIAN L,MASSON-DELMOTTE V,STIEVENARD M,et al . Tibetan Plateau summer monsoon northward extent
revealed by measurements of water stable isotopes[J] . Journal of Geophysical Research,2001,106(D22):
28081-28088 .
[ 41] 朱建佳,陈辉,巩国丽 . 柴达木盆地东部降水氢氧同位素特征与水汽来源[J]. 环境科学,2015,36(8):
2784-2790 .
[ 42] IAEA,WMO . Global network for isotopes in precipitation(GNIP)[EB/OL]. https://nucleus . iaea . org/wiser/
gnip . php,2020-7-22 .
18
[ 43] YAO T D,MASSON-DELMOTTE V,GAO J,et al . A review of climatic controls on δ O in precipitation over the
Tibetan Plateau:Observations and Simulations[J]. Reviews of Geophysics,2013,51(4):525-548 .
[ 44] DANSGAARD W . Stable isotopes in precipitation[J]. Tellus,1964,16(4):436-468 .
[ 45] FROEHLICH K,KRALIK M,PAPESCH W,et al . Deuterium excess in precipitation of Alpine regions-moisture
recycling[J]. Isotopes in Environmental and Health Studies,2008,44(1):61-70 .
[ 46] 章新平,刘晶淼,中尾正义,等 . 我国西南地区降水中过量氘指示水汽来源[J]. 冰川冻土,2009,31(4):
613-619 .
[ 47] JOUZEL J,MERILVAT L . Deuterium and oxygen-18 in precipitation:modeling of the isotope effects during
snow format-ion[J]. Journal of Geophysical Research,1984,89(D7):11749-11757 .
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