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Temporal variations of δ^(18)O of atmospheric water vapor at Delingha 被引量:7
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作者 YIN ChangLiang1, YAO TanDong2, TIAN LiDe2, LIU DongNian3, YU WuSheng2 & QU DongMei2 1 State Key Laboratory of Cryoshperic Science, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China 2 Laboratory of Environment and Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing 100085, China 3 Meteorological Observatory of Haixi Prefecture of Qinghai Province, Delingha 817000, China 《Science China Earth Sciences》 SCIE EI CAS 2008年第7期966-975,共10页
Oxygen stable isotope of atmospheric water vapor is widely used to study the modern process of cli- mate. Atmospheric water vapor samples were collected at Dlingha, northeast of Tibetan Plateau during the period from ... Oxygen stable isotope of atmospheric water vapor is widely used to study the modern process of cli- mate. Atmospheric water vapor samples were collected at Dlingha, northeast of Tibetan Plateau during the period from July 2005 to February 2006. The variation of δ18O and the relationships between δ18O and both the temperature and specific humidity are analyzed in this paper. Results show that the sea- sonal variation of δ18O of atmospheric water vapor at Delingha is remarkable with higher δ18O in summer and lower δ18O in winter. The temporal variation of vapor δ18O shows obvious fluctuations, with magnitude of over 37‰. The daily variation of the δ18O is highly correlated with air temperature. The relationship between δ18O and atmospheric water vapor content is complex. Study shows that δ18O of atmospheric water vapor is positively correlated with specific humidity in winter in seasonal scale and inversely correlated with specific humidity in summer rainy period. The δ18O values of at- mospheric water vapor are lower than those of precipitation at Delingha, and the average difference is 10.7‰. Variations of δ18O of atmospheric water vapor is also found to be affected by precipitation events, The model results show that the precipitation effect could have caused the vapor δ18O in the raining season to lower by 7% in average in July and August. 展开更多
关键词 delingha Δ18o atmospheric water vapor
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Linkage between precipitation isotopes and water vapor sources in the monsoon margin:Evidence from arid areas of Northwest China
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作者 CHEN Fenli ZHANG Qiuyan +3 位作者 WANG Shengjie CHEN Jufan GAO Minyan Mohd Aadil BHAT 《Journal of Arid Land》 SCIE CSCD 2024年第3期355-372,共18页
The isotope composition in precipitation has been widely considered as a tracer of monsoon activity.Compared with the coastal region,the monsoon margin usually has limited precipitation with large fluctuation and is u... The isotope composition in precipitation has been widely considered as a tracer of monsoon activity.Compared with the coastal region,the monsoon margin usually has limited precipitation with large fluctuation and is usually sensitive to climate change.The water resource management in the monsoon margin should be better planned by understanding the composition of precipitation isotope and its influencing factors.In this study,the precipitation samples were collected at five sampling sites(Baiyin City,Kongtong District,Maqu County,Wudu District,and Yinchuan City)of the monsoon margin in the northwest of China in 2022 to analyze the characteristics of stable hydrogen(δD)and oxygen(δ18O)isotopes.We analyzed the impact of meteorological factors(temperature,precipitation,and relative humidity)on the composition of precipitation isotope at daily level by regression analysis,utilized the Hybrid Single-Particle Lagrangian Integrated Trajectory(HYSPLIT)-based backward trajectory model to simulate the air mass trajectory of precipitation events,and adopted the potential source contribution function(PSCF)and concentration weighted trajectory(CWT)to analyze the water vapor sources.The results showed that compared with the global meteoric water line(GMWL),the slope of the local meteoric water line(LMWL;δD=7.34δ^(18)O-1.16)was lower,indicating the existence of strong regional evaporation in the study area.Temperature significantly contributed toδ18O value,while relative humidity had a significant negative effect onδ18O value.Through the backward trajectory analysis,we found eight primary locations that were responsible for the water vapor sources of precipitation in the study area,of which moisture from the Indian Ocean to South China Sea(ITSC)and the western continental(CW)had the greatest influence on precipitation in the study area.The hydrogen and oxygen isotopes in precipitation are significantly influenced by the sources and transportation paths of air mass.In addition,the results of PSCF and CWT analysis showed that the water vapor source areas were primarily distributed in the south and northwest direction of the study area. 展开更多
关键词 water vapor monsoon margin stable water isotope transport trajectory air mass d-excess Δ18o δD
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Isotopic composition of precipitation over Arid Northwestern China and its implications for the water vapor origin 被引量:20
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作者 柳鉴容 宋献方 +3 位作者 孙晓敏 袁国富 刘鑫 王仕琴 《Journal of Geographical Sciences》 SCIE CSCD 2009年第2期164-174,共11页
In order to reveal the characteristics and climatic controls on the stable isotopic composition of precipitation over Arid Northwestern China, eight stations have been selected from Chinese Network of Isotopes in Prec... In order to reveal the characteristics and climatic controls on the stable isotopic composition of precipitation over Arid Northwestern China, eight stations have been selected from Chinese Network of Isotopes in Precipitation(CHNIP).During the year 2005 and 2006, monthly precipitation samples have been collected and analyzed for the composition of δD and δ18O.The established local meteoric water line δD=7.42δ18O+1.38, based on the 95 obtained monthly composite samples, could be treated as isotopic input function across the region.The deviations of slope and intercept from the Global Meteoric Water Line indicated the specific regional meteorological conditions.The monthly δ18O values were characterized by a positive correlation with surface air temperature(δ18O(‰) =0.33 T(℃)-13.12).The amount effect visualized during summer period(δ18O(‰) =-0.04P(mm)-3.44) though not appeared at a whole yearly-scale.Spatial distributions of δ18O have properly portrayed the atmospheric circulation background in each month over Arid Northwestern China.The quan-titative simulation of δ18O, which involved a Rayleigh fractionation and a kinetic fractionation, demonstrated that the latter one was the dominating function of condensation of raindrops.Furthermore, the raindrop suffered a re-evaporation during falling processes, and the precipitation vapor might have been mixed with a quantity of local recycled water vapor.Multiple linear regression equations and a δ18O-T relation have been gained by using meteorological parameters and δ18O data to evaluate physical controls on the long-term data.The established δ18O-T relation, which has been based on the present-day precipitation, could be considered as a first step of quantitatively reconstructing the historical environmental climate. 展开更多
关键词 Arid Northwestern China (ANC) Δ^18o PRECIPITATIoN water vapor origin
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兴安落叶松过伐林水汽浓度与δ^(18)O变化特征及其对气象因子的响应
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作者 张泽 张秋良 +5 位作者 菅亚男 贺晓辉 黄明儒 阿拉木斯 刘喆 关蕾 《内蒙古林业科技》 2023年第2期6-11,28,共7页
本研究揭示了兴安落叶松(Larix gmelinii)过伐林不同垂直高度水汽浓度及其氧同位素比值(δ^(18)O)生长季变化特征以及水汽浓度对气象因子的响应特征,为深入探讨兴安落叶松过伐林水交换过程及其机理提供了理论依据。通过使用氢氧稳定同... 本研究揭示了兴安落叶松(Larix gmelinii)过伐林不同垂直高度水汽浓度及其氧同位素比值(δ^(18)O)生长季变化特征以及水汽浓度对气象因子的响应特征,为深入探讨兴安落叶松过伐林水交换过程及其机理提供了理论依据。通过使用氢氧稳定同位素技术廓线系统对兴安落叶松过伐林4个垂直高度水汽浓度及其氧同位素进行高频原位观测,同步观测空气温度、相对湿度、太阳辐射、风速、降水量、土壤温度、土壤含水率、饱和蒸汽压差等主要气象因子,采用通径分析法分析气象因子对水汽浓度的影响。结果表明:(1)在不同生长季中,水汽浓度和δ^(18)O都呈单峰型变化趋势。二者最高日均峰值都出现在6—7月,最低日均峰值都出现在10月,二者之间呈极显著正相关关系(P<0.001)。(2)水汽浓度的变化受土壤温度、空气温度、相对湿度、太阳辐射、风速、土壤含水率等气象因子的影响。5 cm土壤温度是控制不同高度水汽浓度变化的主要因子(0.910<PC<0.917)。空气温度对不同高度水汽浓度整体表现为促进作用,风速对不同高度水浓度整体表现为抑制作用。 展开更多
关键词 兴安落叶松 过伐林 水汽浓度 δ^(18)o 环境因子
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藏北高原夏季降水的水汽来源分析 被引量:33
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作者 杨梅学 姚檀栋 +1 位作者 田立德 鲁安新 《地理科学》 CSCD 北大核心 2004年第4期426-431,共6页
根据GAME-Tibet加强观测期间取得的降水量和δ18O资料,基于来自海洋性气团的水汽形成的降水中δ18O较低、来自局地蒸发形成的降水中δ18O较高这一认识,尝试性地给出了划分不同来源水汽的标准。基于此标准,对研究区域中局地来源水汽和海... 根据GAME-Tibet加强观测期间取得的降水量和δ18O资料,基于来自海洋性气团的水汽形成的降水中δ18O较低、来自局地蒸发形成的降水中δ18O较高这一认识,尝试性地给出了划分不同来源水汽的标准。基于此标准,对研究区域中局地来源水汽和海洋性气团水汽在总降水中所占的比率定量估计。就安多附近平均而言,1998年6~9月海洋气团的直接输送而形成的降水量至多占总降水量的32.06%,而局地蒸发的水汽所形成的降水量至少占总降水量的46.86%。其它至少有21.8%可能来源于季风环流对沿途蒸发水汽的输送。青藏高原中部(如安多等)的降水,可能是海洋性气团携带的水汽经过若干次凝结-降水(降落到地面)-蒸发-再凝结等过程,不断循环并依次将水分通过季风环流向高原中西部推进。 展开更多
关键词 青藏高原 Δ^18o 不同来源水汽 降水贡献 定量估计
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树轮稳定氧同位素重建东大山过去205年来水汽压变化
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作者 李强 邓若兰 +1 位作者 刘若时 刘禹 《地球环境学报》 CSCD 2020年第6期639-647,共9页
对采自河西走廊东大山的青海云杉(Picea crassifolia)树轮样本提取纤维素并测定其稳定氧同位素比率(δ^(18)O),建立过去205年来树轮δ^(18)O年表序列。与观测数据相关分析发现树轮δ^(18)O年表与周边7—8月平均水汽压具有显著的负相关关... 对采自河西走廊东大山的青海云杉(Picea crassifolia)树轮样本提取纤维素并测定其稳定氧同位素比率(δ^(18)O),建立过去205年来树轮δ^(18)O年表序列。与观测数据相关分析发现树轮δ^(18)O年表与周边7—8月平均水汽压具有显著的负相关关系(r=−0.643,n=59,p<0.001),因此重建了河西走廊东大山周边过去205年的7—8月平均水汽压变化序列,重建方程方差解释量达41.4%,分段检验表明水汽压重建结果稳定可靠。在重建的205年中,水汽压力偏大阶段有6个,偏低阶段有7个。该重建序列与周边地区的水文气候重建的干湿阶段变化及西北地区极端干旱历史事件具有一定的同步性,并可代表大区域范围水汽压变化,进一步证明了本文重建序列的准确性。空间相关分析结果暗示研究区7—8月水汽主要受亚洲季风影响,同时伴有少量西风水汽传输。 展开更多
关键词 树轮δ18o 水汽压重建 东大山 青海云杉
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