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Volume 5 Issue 3

Jul.  1988

Article Contents

CHARACTERISTICS OF THE TEMPORAL-SPATIAL VARIA-TION IN ATMOSPHERIC OZONOSPHERE OVER THE NORTHERN HEMISPHERE DURING THE PERIOD OF 1963-1985


doi: 10.1007/BF02656759

  • The total ozone data of 113 ozone observational stations in the Northern Hemisphere (NH) spanning a period of 1963-1985 have been analysed in this paper. Some interesting results have been obtained, such as the temporal and spatial distribution, long-term trends, the harmonic analysis results, the relationship between the total ozone and solar activity, etc. Furthermore, by using the denned index G, the long-term changes of ozone meridional distribution patterns for the region of Europe-Asia (EA) have been approached particularly.
  • [1] Huang Ronghui, 1985: THE NUMERICAL SIMULATION OF THE THREE-DIMEN-SIONAL TELECONNECTIONS IN THE SUMMER CIRCULA-TION OVER THE NORTHERN HEMISPHERE, ADVANCES IN ATMOSPHERIC SCIENCES, 2, 81-92.  doi: 10.1007/BF03179740
    [2] ZHANG Huan, ZHAI Panmao, 2011: Temporal and Spatial Characteristics of Extreme Hourly Precipitation over Eastern China in the Warm Season, ADVANCES IN ATMOSPHERIC SCIENCES, 28, 1177-1183.  doi: 10.1007/s00376-011-0020-0
    [3] CHEN Bin, XU Xiang-De, YANG Shuai, ZHANG Wei, 2012: On the Temporal and Spatial Structure of Troposphere-to- Stratosphere Transport in the Lowermost Stratosphere over the Asian Monsoon Region during Boreal Summer, ADVANCES IN ATMOSPHERIC SCIENCES, 29, 1305-1317.  doi: 10.1007/s00376-012-1171-3
    [4] K. Gambo, Lu Li, Li Weijing, 1987: NUMERICAL SIMULATION OF EURASIAN TELECONNECTION PATTERN IN ATMOSPHERIC CIRCULATION DURING THE NORTHERN HEMISPHERE WINTER, ADVANCES IN ATMOSPHERIC SCIENCES, 4, 385-394.  doi: 10.1007/BF02656739
    [5] Ho Nam CHEUNG, ZHOU Wen, Hing Yim MOK, Man Chi WU, Yaping SHAO, 2013: Revisiting the Climatology of Atmospheric Blocking in the Northern Hemisphere, ADVANCES IN ATMOSPHERIC SCIENCES, 30, 397-410.  doi: 10.1007/s00376-012-2006-y
    [6] Quansheng GE, Haolong LIU, Xiang MA, Jingyun ZHENG, Zhixin HAO, 2017: Characteristics of Temperature Change in China over the Last 2000 years and Spatial Patterns of Dryness/Wetness during Cold and Warm Periods, ADVANCES IN ATMOSPHERIC SCIENCES, 34, 941-951.  doi: 10.1007/s00376-017-6238-8
    [7] Wang Weiguo, Xie Yingqi, Qiu Jinhuan, Liu Qing, 1998: The Regional Dynamical Model of the Atmospheric Ozonosphere, ADVANCES IN ATMOSPHERIC SCIENCES, 15, 74-82.  doi: 10.1007/s00376-998-0019-3
    [8] Huang Ronghui, 1984: THE CHARACTERISTICS OF THE FORCED STATIONARY PLANETARY WAVE PROPAGATIONS IN SUMMER NORTHERN HEMISPHERE, ADVANCES IN ATMOSPHERIC SCIENCES, 1, 84-104.  doi: 10.1007/BF03187619
    [9] WANG Hai, and LIU Qinyu, 2014: Boreal Winter Rainfall Anomaly over the Tropical Indo-Pacific and Its Effect on Northern Hemisphere Atmospheric Circulation in CMIP5 Models, ADVANCES IN ATMOSPHERIC SCIENCES, 31, 916-925.  doi: 10.1007/s00376-013-3174-0
    [10] Jing Peng, Li Dan, xiba tang, 2023: Spatial variation in CO2 concentration improves simulated surface air temperature increase in the Northern Hemisphere, ADVANCES IN ATMOSPHERIC SCIENCES.  doi: 10.1007/s00376-023-3249-5
    [11] Shingo Yamada, Shuhei Maeda, K. Gambo, 1997: Notes on Extended-Range Atmospheric Prediction in the Northern Hemisphere Winter, ADVANCES IN ATMOSPHERIC SCIENCES, 14, 23-40.  doi: 10.1007/s00376-997-0040-y
    [12] Ting HUA, Xunming WANG, 2018: Temporal and Spatial Variations in the Climate Controls of Vegetation Dynamics on the Tibetan Plateau during 1982-2011, ADVANCES IN ATMOSPHERIC SCIENCES, 35, 1337-1346.  doi: 10.1007/s00376-018-7064-3
    [13] Xiaohua XU, Daocheng YU, Jia LUO, 2018: The Spatial and Temporal Variability of Global Stratospheric Gravity Waves and Their Activity during Sudden Stratospheric Warming Revealed by COSMIC Measurements, ADVANCES IN ATMOSPHERIC SCIENCES, 35, 1533-1546.  doi: 10.1007/s00376-018-5053-1
    [14] Bozhen LI, Gen ZHANG, Lingjun XIA, Ping KONG, Mingjin ZHAN, Rui SU, 2020: Spatial and Temporal Distributions of Atmospheric CO2 in East China Based on Data from Three Satellites, ADVANCES IN ATMOSPHERIC SCIENCES, 37, 1323-1337.  doi: 10.1007/s00376-020-0123-6
    [15] Gang FU, Yawen SUN, Jilin SUN, Pengyuan LI, 2020: A 38-Year Climatology of Explosive Cyclones over the Northern Hemisphere, ADVANCES IN ATMOSPHERIC SCIENCES, 37, 143-159.  doi: 10.1007/s00376-019-9106-x
    [16] Xiaofan LI, SHEN Xinyong, 2012: Temporal and Spatial Scale Dependence of Precipitation Analysis over the Tropical Deep Convective Regime, ADVANCES IN ATMOSPHERIC SCIENCES, 29, 1390-1394.  doi: 10.1007/s00376-012-1269-7
    [17] Alexey V.ELISEEV, Igor I. MOKHOV, 2003: Amplitude-Phase Characteristics of the Annual Cycle of Surface Air Temperature in the Northern Hemisphere, ADVANCES IN ATMOSPHERIC SCIENCES, 20, 1-16.  doi: 10.1007/BF03342045
    [18] GONG Daoyi, Helge DRANGE, 2005: A Preliminary Study on the Relationship Between Arctic Oscillation and Daily SLP Variance in the Northern Hemisphere During Wintertime, ADVANCES IN ATMOSPHERIC SCIENCES, 22, 313-327.  doi: 10.1007/BF02918745
    [19] Minghao YANG, Chongyin LI, Xin LI, Xiong CHEN, Lifeng LI, 2022: The Linkage between Midwinter Suppression of the North Pacific Storm Track and Atmospheric Circulation Features in the Northern Hemisphere, ADVANCES IN ATMOSPHERIC SCIENCES, 39, 502-518.  doi: 10.1007/s00376-021-1145-4
    [20] Wang Guomin, 1993: One Possible Mechanism for the Principal Mode of Atmospheric Low-Prequency Variability in the Northern Hemisphere Winter, ADVANCES IN ATMOSPHERIC SCIENCES, 10, 54-60.  doi: 10.1007/BF02656953

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Manuscript History

Manuscript received: 10 July 1988
Manuscript revised: 10 July 1988
通讯作者: 陈斌, bchen63@163.com
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CHARACTERISTICS OF THE TEMPORAL-SPATIAL VARIA-TION IN ATMOSPHERIC OZONOSPHERE OVER THE NORTHERN HEMISPHERE DURING THE PERIOD OF 1963-1985

  • 1. Department of Geophysics of Yunnan University, Kunming,Institute of Atmospheric Physics, Academia Sinica, Beijing

Abstract: The total ozone data of 113 ozone observational stations in the Northern Hemisphere (NH) spanning a period of 1963-1985 have been analysed in this paper. Some interesting results have been obtained, such as the temporal and spatial distribution, long-term trends, the harmonic analysis results, the relationship between the total ozone and solar activity, etc. Furthermore, by using the denned index G, the long-term changes of ozone meridional distribution patterns for the region of Europe-Asia (EA) have been approached particularly.

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