Tropical Geography ›› 2021, Vol. 41 ›› Issue (3): 635-644.doi: 10.13284/j.cnki.rddl.003350
Previous Articles Next Articles
Xin Chang1(), Xinping Zhang1,2(
), Zhongli Liu1, Rui Wang1
Received:
2021-01-14
Revised:
2021-03-21
Online:
2021-06-30
Published:
2021-06-24
Contact:
Xinping Zhang
E-mail:870355137@qq.com;zxp@hunnu.edu.cn
CLC Number:
Xin Chang, Xinping Zhang, Zhongli Liu, Rui Wang. Differences in Stable Isotopes in Precipitation between Day and Night: A Case Study of Changsha[J].Tropical Geography, 2021, 41(3): 635-644.
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
Table 1
During the periods of an entire year, warm half year and cold half year, the differences of mean values of daily stable isotopes, related meteorological elements and annual precipitation at day and night in Changsha
时段 | δ18O/‰ | d/‰ | P/mm | ΔT/℃ | RH/% | T/℃ | |
---|---|---|---|---|---|---|---|
年时段 | 昼 | -6.3 | 14.0 | 726.2 | 3.4 | 82.37 | 15.9 |
夜 | -6.1 | 14.8 | 732.1 | 2.3 | 86.58 | 13.5 | |
暖半年 | 昼 | -6.9 | 12.5 | 509.4 | 3.1 | 80.51 | 23.2 |
夜 | -6.7 | 13.0 | 446.4 | 2.3 | 87.62 | 20.1 | |
冷半年 | 昼 | -5.0 | 17.5 | 216.9 | 3.7 | 83.11 | 9.2 |
夜 | -5.3 | 17.5 | 285.7 | 2.3 | 84.65 | 8.7 |
Table 2
The differences of mean values of daily stable isotopes and related meteorological elements under the dominance of convective precipitation and large-scale precipitation at day and night in Changsha
时段 | 标目/单位 | 年时段 | 暖半年 | 冷半年 | |||||
---|---|---|---|---|---|---|---|---|---|
对流 | 平流 | 对流 | 平流 | 对流 | 平流 | ||||
昼 | δ18O/‰ | -6.3 | -6.5 | -6.7 | -7.8 | -5.0 | -5.7 | ||
d/‰ | 12.9 | 15.8 | 12.5 | 12.1 | 16.9 | 18.1 | |||
P/mm | 9.1 | 6.3 | 10.5 | 13.5 | 3.8 | 4.4 | |||
T/℃ | 20.7 | 9.7 | 22.9 | 24.2 | 9.1 | 7.5 | |||
RH/% | 80.34 | 86.35 | 80.71 | 81.22 | 83.38 | 85.12 | |||
夜 | δ18O/‰ | -5.9 | -6.7 | -6.4 | -7.7 | -5.1 | -5.3 | ||
d/‰ | 14.3 | 15.6 | 13.3 | 11.9 | 18.3 | 17.1 | |||
P/mm | 9.2 | 6.2 | 10.9 | 10.2 | 4.6 | 6.1 | |||
T/℃ | 16.0 | 10.3 | 20.3 | 19.6 | 8.1 | 9.1 | |||
RH/% | 86.32 | 87.19 | 87.43 | 88.14 | 85.07 | 84.56 |
Table 3
Correlation between δ18O and δ2H in precipitation and stable isotopes with different precipitation intensities in Changsha at day and night in the whole year, warm and cold half year
时段 | ≥0.1 | ≥5.0 | ≥10.0 | ≥25.0 | ≥50.0 | ||||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
斜率/截距 | δ18O/d | 斜率/截距 | δ18O/d | 斜率/截距 | δ18O/d | 斜率/截距 | δ18O/d | 斜率/截距 | δ18O/d | ||||||
年 时 段 | 白天 | 8.36/16.30 | -6.3/14.0 | 8.69/18.50 | -6.6/13.7 | 8.76/18.55 | -7.1/13.2 | 8.80/19.10 | -7.8/12.9 | 8.98/21.39 | -10.8/10.5 | ||||
夜间 | 8.19/16.26 | -6.2/14.8 | 8.66/19.42 | -6.4/14.6 | 8.65/18.65 | -6.5/14.2 | 8.76/19.19 | -7.2/13.7 | 8.61/17.61 | -7.4/13.1 | |||||
全天 | 8.27/16.07 | -6.3/14.3 | 8.68/18.88 | -6.5/14.1 | 8.67/18.36 | -6.7/13.8 | 8.75/18.70 | -7.5/13.1 | 8.72/18.77 | -8.1/13.0 | |||||
暖 半 年 | 白天 | 8.38/13.58 | -6.9/12.5 | 8.80/17.80 | -7.1/12.6 | 8.83/18.16 | -7.4/12.5 | 8.78/18.54 | -8.1/12.4 | 8.98/21.39 | -10.8/10.5 | ||||
夜间 | 8.35/14.39 | -6.7/13.0 | 8.57/16.78 | -6.9/13.1 | 8.54/16.71 | -6.9/13.1 | 8.69/18.37 | -7.3/13.3 | 8.61/17.61 | -7.4/13.1 | |||||
全天 | 8.32/13.74 | -6.3/13.3 | 8.79/18.12 | -6.4/13.5 | 8.75/17.94 | -6.5/13.4 | 8.84/18.95 | -6.9/13.4 | 8.28/16.17 | -6.0/14.8 | |||||
冷 半 年 | 白天 | 8.01/17.53 | -5.0/17.5 | 8.22/18.53 | -5.3/17.3 | 8.40/19.14 | -5.8/16.9 | 8.28/19.28 | -5.0/17.9 | — | — | ||||
夜间 | 7.78/16.60 | -5.3/17.5 | 8.44/20.17 | -5.5/17.4 | 8.51/19.73 | -5.5/16.9 | 8.86/21.22 | -6.6/15.7 | — | — | |||||
全天 | 7.92/17.24 | -5.1/17.6 | 8.35/19.53 | -5.3/17.4 | 8.35/18.90 | -5.4/17.1 | 8.65/20.34 | -6.1/16.3 | 7.70/16.85 | -3.7/17.9 |
Aggarwal P K, Alduchov O A, Froehlich K O, Araguas‐Araguas L J, Sturchio N C and Kurita N. 2012. Stable Isotopes in Global Precipitation: A Unified Interpretation Based on Atmospheric Moisture Residence Time. Geophysical Research Letters, 39(11): 162-171. | |
Aggarwal P K, Romatschke U, Araguas-Araguas L, Belachew D, Longstaffe F J, Berg P, Schumacher C and Funk A. 2016. Proportions of Convective and Stratiform Precipitation Revealed in Water Isotope Ratios. Nature Geoscience, 9(8): 624-629. | |
Awaka J, Iguchi T, Kumagai H and Okamoto K I. 1997. Rain Type Classification Algorithm for TRMM Precipitation Rada. Singapore: 1997IEEE International Geoscience and Remote Sensing Symposium Proceedings. Remote Sensing-A Scientific Vision for Sustainable Development, 1633-1635. | |
Berg P, Moseley C and Haerter J O. 2013. Strong Increase in Convective Precipitation in Response to Higher Temperatures. Nature Geoscience, 6(3): 181-185. | |
Celle-Jeanton H, Gonfiantini R, Travi Y and Sol B. 2004. Oxygen-18 Variations of Rainwater during Precipitation: Application of the Rayleigh Model to Selected Rainfalls in Southern France. Journal of Hydrology, 289(1/4): 165-177. | |
Craig H. 1961. Isotopic Variations with Meteoric Water. Science, 133(3465): 1702-1703. | |
Cui B L and Li X Y. 2015. Characteristics of Stable Isotopes and Hydrochemistry of River Water in the Qinghai Lake Basin, Northeast Qinghai-Tibet Plateau, China. Environmental Earth Sciences, 73 (8): 4251-4263. | |
Dansgaard W. 1964. Stable Isotopes in Precipitation. Tellus, 16(4): 436-468. | |
Funk A, Schumacher C and Awaka J. 2013. Analysis of Rain Classifications over the Tropics by Version 7 of the TRMM PR 2A23 Algorithm. Journal of the Meteorological Society of Japan. Ser. II, 91(3): 257-272. | |
黄一民,章新平,唐方雨,吴华武,张剑明. 2013. 长沙大气降水中稳定同位素变化及过量氘指示水汽来源. 自然资源学报,28(11):1945-1954. | |
Huang Yimin, Zhang Xinping, Tang Fangyu, Wu Huawu and Zhang Jianming. 2013. Variations of Precipitation Stable Isotope and Vapor Origins Revealed by Deuterium Excess in Changsha. Journal of Natural Resources, 28(11): 1945-1954. | |
黄一民,章新平,孙葭. 2014. 长沙大气水线及与局地气象要素的关系. 长江流域资源与环境,23(10):1412-1417. | |
Huang Yimin, Zhang Xinping and Sun Jia. 2014. Meteoric Water Line and Relationship with Local Meteorological Factors in Changsha. Resources and Environment in the Yangtze Basin, 23(10): 1412-1417. | |
黄一民,章新平,孙葭,黄一斌,魏乃琼. 2015. 长沙大气水汽、降水中稳定同位素季节变化及与水汽输送关系. 地理科学,35(4):498-506. | |
Huang Yimin, Zhang Xinping, Sun Jia, Huang Yibin and Wei Naiqiong. 2015. Seasonal Variations of Stable Isotope in Precipitation and Atmospheric Water Vapor and Their Relationship with Moisture Transportation in Changsha City. Scientia Geographica Sinica, 35(4): 498-506. | |
Liu C, Zipser E J, Cecil D J, Nesbitt S W and Sherwood S. 2008. A Cloud and Precipitation Feature Database from Nine Years of TRMM Observations. Journal of Applied Meteorology and Climatology, 47(10): 2712-2728. | |
李广. 2014. 我国西南地区降水稳定同位素变化特征及水汽来源追踪的研究. 长沙:湖南师范大学. | |
Li Guang. 2014. Study on Variable Characteristics of Stable Isotopes in Precipitation and Tracking the Moisture Sources in Southwest China. Changsha: Hunan Normal University. | |
李廷勇,李红春,沈川洲,杨朝秀,李俊云,衣成城,袁道先,王建力,谢世友. 2010. 2006-2008年重庆大气降水δD和δ18O特征初步分析. 水科学进展,21(6):757-764. | |
Li Tingyong, Li Hongchun, Shen Chuanzhou, Yang Chaoxiu, Li Junyun, Yi Chengcheng, Yuan Daoxian, Wang Jianli and Xie Shiyou. 2010. Study on the δD and δ18O Characteristics of Meteoric Precipitation during 2006-2008 in Chongqing, China. Advances in Water Science, 21(6): 757-764. | |
刘小康,饶志国,张肖剑,黄伟,陈建徽,陈发虎. 2015. 天山地区大气降水氧同位素的影响因素及其对西风环流变化的指示意义. 地理学报,70(7):97-109. | |
Liu Xiaokang, Rao Zhiguo, Zhang Xiaojian, Huang Wei, Chen Jianhui and Chen Fahu. 2015. Variations in the Oxygen Isotopic Composition of Precipitation in the Tianshan Mountains Region and Their Significance for the Westerly Circulation. Journal of Geographical Sciences, 70(7): 97-109. | |
Muller C L, Baker A, Fairchild I J, Kidd C and Boomer I. 2014. Intra-Event Trends in Stable Isotopes: Exploring Midlatitude Precipitation Using a Vertically Pointing Micro Rain Radar. Journal of Hydrometeorology, 16(1): 194-213. | |
Munksgaard N C, Wurster C M, Bass A and Bird M I. 2012. Extreme Short‐Term Stable Isotope Variability Revealed by Continuous Rainwater Analysis. Hydrological Processes, 26(23): 3630-3634. | |
毛江玉,吴国雄. 2012. 基于TRMM卫星资料揭示的亚洲季风区夏季降水日变化. 中国科学:地球科学,42(4):564-576. | |
Mao Jiangyu and Wu Guoxiong. 2012. Diurnal Variations of Summer Precipitation over the Asian Monsoon Region as Revealed by TRMM Satellite Data. Sci. China Earth Sci., 42(4): 564-576. | |
孟玉川,刘国东. 2010. 长江流域降水稳定同位素的云下二次蒸发效应. 水科学进展,21(3):327-334. | |
Meng Yuchuan and Liu Guodong. 2010. Effect of Below-Cloud Secondary Evaporation on the Stable Isotopes in Precipitation over the Yangtze River Basin. Advances in Water Science, 21(3): 327-334. | |
Riley G T, Landin M G and Bosart L F. 1987. The Diurnal Variability of Precipitation across the Central Rockies and Adjacent Great Plains. Monthly Weather Review, 115(6): 1161-1172. | |
Risi C, Bony S and Vimeux F. 2008. Influence of Convective Processes on the Isotopic Composition (δ18O and δD) of Precipitation and Water Vapor in the Tropics: 2. Physical Interpretation of the Amount effect. Journal of Geophysical Research: Atmospheres, 113: D19. DOI: 10.1029/2008JD009943. | |
Tan L, Cai Y, An Z, Cheng H, Shen C C, Gao Y and Edwards R L. 2016. Decreasing Monsoon Precipitation in Southwest China during the Last 240 Years Associated with the Warming of Tropical Ocean. Climate Dynamics, 48(5/6): 1-10. | |
王东阡,张耀存. 2012. 中国东部西南低空急流日变化特征及其机制. 地球物理学报,55(8):2498-2507. | |
Wang Dongqian and Zhang Yaocun. 2012. Diurnal Variation of the South-Westerly Low-Level Jet over Eastern China and Its Mechanism. Chinese Journal of Geophysics Chinese Edition, 55(8): 2498-2507. | |
吴华武,章新平,孙广禄,黄一民,申林,郭丽香. 2012a. 湖南长沙地区大气降水中稳定同位素特征变化. 长江流域资源与环境,21(5):540-546. | |
Wu Huawu, Zhang Xinping, Sun Guanglu, Huang Yimin, Shen Lin and Guo Lixiang. 2012a. Variations of Stable Isotopic Characteristics of Atmospheric Precipitation from Changsha, Hunan. Resources and Environment in The Yangtze Basin, 21(5): 540-546. | |
吴华武,章新平,关华德,孙广禄,黄一民,张婷婷. 2012b. 不同水汽来源对湖南长沙地区降水中δD、δ18O的影响. 自然资源学报,27(8):1404-1414. | |
Wu Huawu, Zhang Xinping, Guan Huade, Sun Guanglu, Huang Yimin and Zhang Tingting. 2012b. Influences of Different Moisture Sources on δD and δ18O in Precipitation in Changsha, Hunan Province. Journal of Natural Resources, 27(8): 1404-1414. | |
Xie L, Wei G, Deng W and Zhao X. 2011. Daily δ18O and δD of Precipitations from 2007 to 2009 in Guangzhou, South China: Implications for Changes of Moisture Sources. Journal of Hydrology, 400(3/4): 477-489. | |
Yoshimura K, Kanamitsu M, Noone D and Oki T. 2008. Historical Isotope Simulation Using Reanalysis Atmospheric Data. Journal of Geophysical Research: Atmospheres, 113: D19. DOI: 10.1029/2008JD010074. | |
姚天次,章新平,李广,黄煌,吴华武,黄一民,张婉君. 2016. 湘江流域岳麓山周边地区不同水体中氢氧稳定同位素特征及相互关系. 自然资源学报,31(7):1198-1210. | |
Yao Tianci, Zhang Xinping, Li Guang, Huang Huang, Wu Huawu, Huang Yimin and Zhang Wanjun. 2016. Characteristics of the Stable Isotopes in Different Water Bodies and Their Relationships in Surrounding Areas of Yuelu Mountain in the Xiangjiang River Basin. Journal of Natural Resources, 31(7): 1198-1210. | |
姚天次,章新平,谢宇龙,黄煌,张婉君. 2017. 长沙地区近地面水汽中氢氧稳定同位素的变化特征. 环境科学学报,37(2):545-553. | |
Yao Tianci, Zhang Xinping, Xie Yulong, Huang Huang and Zhang Wanjun. 2017. Variations of Hydrogen and Oxygen Isotopes in Atmospheric Water Vapor of Near Surface in Changsha. Acta Scientiae Circumstantiae, 37(2): 545-553. | |
Zhao B, Zhang B, Shi C, Liu J and Jiang L. 2019. Comparison of the Global Energy Cycle between Chinese Reanalysis Interim and ECMWF Reanalysis. Journal of Meteorological Research, 33(3): 563-575. | |
章新平,姚檀栋,田立德,刘晶淼. 2004. 湿度效应及其对降水中δ18O季节分布的影响. 冰川冻土,26(4):420-425. | |
Zhang Xinping, Yao Tandong, Tian Lide and Liu Jingmiao. 2004. Humidity Effect and Its Influence on Seasonal Distribution of δ18O in Precipitation. Journal of Glaciology and Geocryology, 26(4): 420-425. | |
周慧,章新平,姚天次,华明权,王学界. 2019. 长沙降水中δ18O变化对上游降水的响应分析. 第四纪研究,39(2):294-308. | |
Zhou Hui, Zhang Xinping, Yao Tianci, Hua Mingquan and Wang Xuejie. 2019. Analysis on the Responses of Precipitation δ18O to Upstream Rainout in Changsha. Quaternary Sciences, 39(2): 294-308. |
[1] | Shuqian Qin, Nan Zhang, Yong Zhang, Chen Zhang, Peijuan Zhu. Exploration of Sustainable Renewal Path of Urban Villages: A Case Study of Huanghe Village, Hou Lake, Changsha [J]. Tropical Geography, 2021, 41(3): 461-471. |
[2] | Yu Xiang, Honghui Zhang, Xiaoping Liu. Urban Physical Examination Evaluation Based on Multisource Data: A Case Study of Changsha City [J]. Tropical Geography, 2021, 41(2): 277-289. |
[3] | Wang Jialu, Ren Juan, Wang Yong, Li Weijie, Lou Zhao, Chen Jia. Diel Variations of Hydrochemistry and Influencing Factors in the Surface Water of the Yelanghu Reservoir in Puding, Guizhou Province [J]. Tropical Geography, 2020, 40(2): 335-345. |
[4] | HUA Mingquan,ZHANG Xinping,YAO Tianci,HUANG Huang,LUO Zidong. Experiments and Simulations of Water Stable Isotopes Fractionation in Evaporation Pan [J]. TROPICAL GEOGRAPHY, 2017, 37(4): 501-511. |
[5] | HUANG Huang,ZHANG Xinping,LI Guang,HUANG Yimin,LIAO Mengsi. Variation of Stable Isotopes in Pan Water Evaporation Process in Changsha [J]. TROPICAL GEOGRAPHY, 2014, 34(6): 776-782. |
[6] | Liang Guozhao. THE NORTHERN BORDER OF THE ANCIENT NANYUE KINGDOM AND SOME RELEVANT PROBLEMS [J]. TROPICAL GEOGRAPHY, 1995, 15(4): 369-375. |
[7] | Xie Guanghui, Luo Wanglin, Xiong Shaohua. ON SETTING UP A HIGHER SCIENCE AND TECHNOLOGY GARDEN IN CHANGSHA——ZHUZHOU-XIANGTAN TRIANGLE REGION, HUNAN [J]. TROPICAL GEOGRAPHY, 1993, 13(2): 143-148. |
|