[南京梅雨同位素组成从事件到年际尺度的时空变异]。

Q3 Environmental Science 应用生态学报 Pub Date : 2024-04-18 DOI:10.13287/j.1001-9332.202404.017
Hao Zhang, Wei Xiao, Cheng-Yu Xie, Yong-Bo Hu, Hao-Ran Chu, Jing-Yuan Wang, Xu-Hui Li
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引用次数: 0

摘要

梅雨期降水量占季风区年降水量的40%-50%。为明确梅雨期降水同位素组成从事件到年际尺度的时空变异性,找出影响因素,我们分析了南京地区2015-2022年降水同位素组成及其影响因素。利用混合单粒子拉格朗日综合轨迹(HYSPLIT)模式,结合比湿分析,研究了水汽来源及影响因素。结果表明:1)大气降水的同位素丰度在夏季枯竭,冬季富集。梅雨降水的同位素丰度比全年平均值低。2) 梅雨(降水)的 δ2H 和 δ18O 与当地气象因素无明显相关性。不过,小雨时 dx 较低,反映了云下蒸发的影响。梅雨总降水量较多的年份,梅雨期的平均 dx 值较高。3) 低纬度南海和西太平洋水汽源区为梅雨提供了水汽。水汽源区的转移导致了降水同位素的突变。我们的研究结果可为季风区降水同位素的研究提供数据支持,也为进一步了解梅雨的降水机理和研究东亚季风区大气环流的季节变化提供参考。
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[Temporal variability of the isotope compositions of plum rain in Nanjing from event to interannual time scales].

Precipitation in the plum rain period accounts for 40%-50% of annual precipitation in the monsoon region. To clarify the temporal variability of the isotopic composition of precipitation during the plum rain period from event to interannual time scale and identify the influencing factors, we analyzed the isotopic composition of precipitation and its influencing factors in Nanjing from 2015 to 2022. By using the Hybrid Single-particle Lagran-gian Integrated Trajectory (HYSPLIT) model with specific humidity analysis, we investigated the water vapor source and influencing factors. The results showed that 1) the isotopic abundance of atmospheric precipitation was depleted in the summer and enriched in winter. dx was lower in summer and higher in winter. The isotopic abundance of precipitation from the plum rain was depleted compared to mean value of the whole-year. 2) There was no significant correlation between δ2H and δ18O of the plum rain (precipitation) with local meteorological factors. However, dx was lower in light rain, reflecting the effect of sub-cloud evaporation. The average dx was higher during plum rain period in years with more total plum rain precipitation. 3) The low-latitude South China Sea and the western Pacific Ocean source area provided water vapor for the plum rain. The shift of moisture source region led to abrupt changes in precipitation isotopes. Our results could provide data support for studies on precipitation isotopes in the monsoon region, as well as a reference point for further understanding the precipitation mechanism of the plum rain and stu-dying the seasonal variability of atmospheric circulation in the East Asian monsoon region.

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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
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0.00%
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11393
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