参考文献/References:
[1] GAT J R. Oxygen and hydrogen isotopes in the hydrologic cycle[J]. Annual Review of Earth and Planetary Sciences, 1996, 24(1): 225-262.
[2] BASKARAN M, NOVELL T, NASH K, et al. Tracing the seepage of subsurface sinkhole vent waters into Lake Huron using radium and stable isotopes of Oxygen and Hydrogen[J]. Aquatic Geochemistry, 2016, 22(4): 1-26.
[3] AEMISEGGER F, PFAHL S, SODEMANN H, et al. Deuterium excess as a proxy for continental moisture recycling and plant transpiration[J]. Atmospheric Chemistry & Physics, 2014, 14(8): 29721-29784.
[4] WARRIER C U, BABU M P. A study on the spatial variations in stable isotopic composition of precipitation in a semiarid region of Southern India[J]. Hydrological Processes, 2012, 26(25): 3791-3799.
[5] LIU Jianrong, SONG Xianfang, YUAN Guofu, et al. Stable isotopes of summer monsoonal precipitation in southern China and the moisture sources evidence from δ18O signature[J]. Journal of Geographical Sciences, 2008, 18(2): 155-165.
[6] WU Huawu, ZHANG Xinping, LI Xiaoyan, et al. Seasonal variations of deuterium and oxygen-18 isotopes and their response to moisture source for precipitation events in the subtropical monsoon region[J]. Hydrological Processes, 2015, 29(1): 90-102.
[7] KRESS A, SAURER M, SIEGWOLF R T W, et al. A 350 year drought reconstruction from Alpine tree ring stable isotopes[J/OL]. Global Biogeochemical Cycles, 2010, 24, GB2011, doi: 10.1029/2009GB003613.
[8] STEEN-LARSEN H C, MASSON-DELMOTTE V, SJOLTE J, et al. Understanding the climatic signal in the water stable isotope records from the NEEM shallow firn/ice cores in northwest Greenland[J]. Journal of Geophysical Research, 2011, 116(D6): 161-165.
[9] 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.
[10] 刘洁遥, 张福平, 冯起, 等. 西北地区降水稳定同位素的云下二次蒸发效应[J]. 应用生态学报, 2018, 29(5): 1479-1488. [LIU Jieyao, ZHANG Fuping, FENG Qi, et al. Influence of below-cloud secondary evaporation on stable isotope composition in precipitation in Northwest China. Chinese Journal of Applied Ecology, 2018, 29(5): 1479-1488]
[11] MA Qian, ZHANG Mingjun, WANG Shengjie, et al. An investigation of moisture sources and secondary evaporation in Lanzhou, Northwest China[J]. Environmental Earth Sciences, 2014, 71(8): 3375-3385.
[12] 孟玉川, 刘国东. 长江流域降水稳定同位素的云下二次蒸发效应[J]. 水科学进展, 2010, 21(3): 327-334. [MENG Yuchuan, LIU Guodong. Effect of below-cloud secondary evaporation on the stable isotopes in precipitation over the Yangtze River Basin[J]. Advances in Water Science, 2010, 21(3): 327-334]
[13] CORTECCI G, DINELLI E, MUSS M. Isotopic composition and secondary evaporation effects on precipitation from the urban centre of Bologna, Italy[J]. Periodico di Mineralogia, 2008, 77(1): 53-61.
[14] PENG H, MAYER B, HARRIS S, et al. The influence of below-cloud secondary effects on the stable isotope composition of hydrogen and oxygen in precipitation at Calgary, Alberta, Canada[J]. Tellus B, 2007, 59(4): 698-704.
[15] ZHU Guofeng, LI Jiafang, SHI Peiji, et al. Relationship between sub-cloud secondary evaporation and stable isotope in precipitation in different regions of China[J]. Environmental Earth Sciences, 2016, 75(10): 876.
[16] 任雯, 郑新军, 吴雪, 等. 云下二次蒸发对降水过程中氢氧稳定同位素构成的影响[J]. 干旱区研究, 2017, 34(6): 1263-1270. [REN Wen, ZHENG Xinjun, WU Xue, et al. Effect of below-cloud secondary evaporation on stable isotopes of hydrogen and oxygen in precipitation over the east of northwest China[J]. Arid Zone Research, 2017, 34(6): 1263-1270]
[17] 潘素敏, 张明军, 王圣杰. 新疆夏季云下二次蒸发对雨滴稳定同位素影响的定量研究[J]. 干旱区地理, 2018, 41(3): 488-498. [PAN Sumin, ZHANG Mingjun, WANG Shengjie. Quantitative study of sub-cloud secondary evaporation effect on stable isotopes in raindrops during summer in Xinjiang[J]. Arid Land Geography, 2018, 41(3): 488-498]
[18] 李小飞, 张明军, 王圣杰, 等. 黄河流域大气降水氢、氧稳定同位素时空特征及其环境意义[J]. 地质学报, 2013, 87(2): 269-277. [LI Xiaofei, ZHANG Mingjun, WANG Shengjie, et al. Spatial and temporal variations of oxygen and hydrogen isotopes in precipitation in the Yellow River and its environmental significance [J]. Acta Geologica Sinica, 2013, 87(2): 269-277]
[19] ZHANG Xinping, XIE Zichu, YAO Tandong. Mathematical modeling of variations on stable isotopic ratios in falling raindrops [J]. Acta Meteorologica Sinica, 1998, 12(2): 213-220.
[20] 赵诗坤, 庞朔光, 文蓉, 等. 海河流域降水稳定同位素的云底二次蒸发效应[J]. 地理科学进展, 2015, 34(8): 1031-1038. [ZHAO Shikun, PANG Shuoguang, WEN Rong, et al. Influence of below-cloud secondary evaporation on stable isotope composition in precipitation in the Haihe River Basin, China [J]. Progress in Geography, 2015, 34(8): 1031-1038]
[21] LI Zongxing, FENG Qi, WANG Yamin, et al. Effect of sub-cloud evaporation on the δ18O of precipitation in Qilian Mountains and Hexi Corridor, China[J]. Sciences in Cold and Arid Regions, 2016, 8(5): 378-387.
[22] SALAMALIKIS V, ARGIRIOU A A, DOTSIKA E. Isotopic modeling of the sub-cloud evaporation effect in precipitation[J]. Science of the Total Environment, 2016, 544: 1059-1072.
[23] WANG Shengjie, ZHANG Mingjun, CHE Yanjun, et al. Influence of below-cloud evaporation on deuterium excess in precipitation of arid central Asia and its meteorological controls[J]. Journal of Hydrometeorology, 2016, 17(7): 1973-1984.
[24] KONG Yanlong, PANG Zhonghe, FROEHLICH K. Quantifying recycled moisture fraction in precipitation of an arid region using deuterium excess[J/OL]. Tellus B: Chemical and Physical Meteorology, 2013, 65, doi: 10.3402/tellusb.v65i0.19251.
[25] 周苏娥, 张明军, 王圣杰, 等. 基于Stewart模型改进方案的新疆降水同位素云下蒸发效应比较[J]. 冰川冻土, 2019, 41(2): 304-315. [ZHOU Su'e, ZHANG Mingjun, WANG Shengjie, et al. A comparison of sub-cloud secondary evaporation effect of precipitation isotope in Xinjiang based on the Stewart model improvement scheme[J]. Journal of Glaciology and Geocryology, 2019, 41(2): 304-3A15]
[26] CRAWFORD J, HOLLINS S E, MEREDITH K T, et al. Precipitation stable isotope variability and subcloud evaporation processes in a semi-arid region[J]. Hydrological Processes, 2017, 31(1): 20-34.
[27] CHEN Fenli, ZHANG Mingjun, WANG Shengjie, et al. Relationship between sub-cloud secondary evaporation and stable isotope in precipitation of Lanzhou and surrounding area[J]. Quaternary International, 2015, 380/381: 68-74.
[28] 李栋梁,刘德祥. 甘肃气候[M]. 北京: 气象出版社, 2000: 93-96. [LI Dongliang, LIU Dexiang. Climate change of Gansu Province[M]. Beijing: China Meteorological Press, 2000: 93-96]
[29] 马中华, 张勃, 张建香, 等. 近30年甘肃省气温时空变异分析[J]. 高原气象, 2012, 31(3): 760-767. [MA Zhonghua, ZHANG Bo, ZHANG Jianxiang, et al. Analyses on spatial-temporal differentiation of air temperature in Gansu province during 1979-2008[J]. Plateau Meteorology, 2012, 31(3): 760-767]
[30] FRIEDMAN I, O'NEIL J. Data of geochemistry: Compilation of stable isotope fractionation factors of geochemical interest[M]. Washington, D.C.: US Government Printing Office, 1977: 117.
[31] CRISS R. Principles of stable isotope distribution[M]. New York: Oxford University, 1999: 264.
[32] STEWART M K. Stable isotope fractionation due to evaporation and isotopic exchange of falling water drops: applications to atmospheric processes and evaporation of lakes[J]. Journal of Geophysical Research, 1975, 80(9): 1133-1146.
[33] YANG Y M, KANG I S, ALMAZROUI M. A mass flux closure function in a GCM based on the Richardson number[J]. Climate Dynamics, 2014, 42(5): 1129-1138.
[34] 靳晓刚, 张明军, 王圣杰,等. 基于氢氧稳定同位素的黄土高原云下二次蒸发效应[J]. 环境科学, 2015, 36(4): 1241-1248. [JIN Xiaogang, ZHANG Mingjun, WANG Shengjie, et al. Effect of below-cloud secondary evaporation in precipitation over the Loess Plateau based on the stable isotopes of hydrogen and oxygen[J]. Environmental Science, 2015, 36(4): 1241-1248]
[35] UEMURA R, MATSUI Y, YOSHIMURA K, et al. Evidence of deuterium excess in water vapor as an indicator of ocean surface conditions[J/OL]. Journal of Geophysical Research Atmospheres, 2008, 113(D19): D19114.
[36] 陈粉丽. 基于大气降水稳定同位素的兰州市水循环研究[D]. 兰州: 西北师范大学, 2016:88-96. [CHEN Fenli. Water cycle research in Lanzhou City based on stable isotope in precipitation[D]. Lanzhou: Northwest Normal University, 2016:88-96]
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