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Volume 8 Issue 3

Jul.  1991

Article Contents

Relaxation Time and Conductivity at a Rural Station: Raichur


doi: 10.1007/BF03342563

  • An examination of decay and growth rates of electric field near the ground during total solar eclipse of 16 Febru-ary 1980 was made to study the electrical relaxation time and conductivity at Raichur. The values obtained i.e., 1320 seconds and 67.1163 10-16 mhos m-1 of the two parameters were in fair agreement with the reported ones at the rural locations.
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    [2] WANG Linlin, GAO Zhiqiu, MIAO Shiguang, GUO Xiaofeng, SUN Ting, Maofeng LIU, Dan LI, 2015: Contrasting Characteristics of the Surface Energy Balance between the Urban and Rural Areas of Beijing, ADVANCES IN ATMOSPHERIC SCIENCES, 32, 505-514.  doi: 10.1007/s00376-014-3222-4
    [3] REN Fumin, WANG Yongmei, WANG Xiaoling, LI Weijing, 2007: Estimating Tropical Cyclone Precipitation from Station Observations, ADVANCES IN ATMOSPHERIC SCIENCES, 24, 700-711.  doi: 10.1007/s00376-007-0700-y
    [4] Qiao ZHU, Li-Ming CAO, Meng-Xue TANG, Xiao-Feng HUANG, Eri SAIKAWA, Ling-Yan HE, 2021: Characterization of Organic Aerosol at a Rural Site in the North China Plain Region: Sources, Volatility and Organonitrates, ADVANCES IN ATMOSPHERIC SCIENCES, 38, 1115-1127.  doi: 10.1007/s00376-020-0127-2
    [5] S. S. Kandalgaonkar, G. K. Manohar, 1991: Variations in the Atmospheric Electric Field at Tropical Station during 1930-1987, ADVANCES IN ATMOSPHERIC SCIENCES, 8, 99-106.  doi: 10.1007/BF02657368
    [6] WANG Geli, YANG Peicai, ZHOU Xiuji, 2013: Nonstationary Time Series Prediction by Incorporating External Forces, ADVANCES IN ATMOSPHERIC SCIENCES, 30, 1601-1607.  doi: 10.1007/s00376-013-2134-z
    [7] Zhou Jiabin, 1985: A NEW TYPE OF TIME-SERIES-FORECASTING METHOD, ADVANCES IN ATMOSPHERIC SCIENCES, 2, 385-401.  doi: 10.1007/BF02677255
    [8] Fang Juan, Wu Rongsheng, 1998: Frontogenesis, Evolution and the Time Scale of Front Formation, ADVANCES IN ATMOSPHERIC SCIENCES, 15, 233-246.  doi: 10.1007/s00376-998-0042-4
    [9] GUO Yanjun, DING Yihui, 2011: Impacts of Reference Time Series on the Homogenization of Radiosonde Temperature, ADVANCES IN ATMOSPHERIC SCIENCES, 28, 1011-1022.  doi: 10.1007/s00376-010-9211-3
    [10] Jang-Woon WANG, Jae-Jin KIM, Wonsik CHOI, Da-Som MUN, Jung-Eun KANG, Hataek KWON, Jin-Soo KIM, Kyung-Soo HAN, 2017: Effects of Wind Fences on the Wind Environment around Jang Bogo Antarctic Research Station, ADVANCES IN ATMOSPHERIC SCIENCES, 34, 1404-1414.  doi: 10.1007/s00376-017-6333-x
    [11] Minghu DING, Wei HAN, Tong ZHANG, Xiaoyuan YUE, Jeremy FYKE, Ge LIU, Cunde XIAO, 2020: Towards More Snow Days in Summer since 2001 at the Great Wall Station, Antarctic Peninsula: The Role of the Amundsen Sea Low, ADVANCES IN ATMOSPHERIC SCIENCES, 37, 494-504.  doi: 10.1007/s00376-019-9196-5
    [12] Fang Zhifang, John M. Wallace, David W. J. Thompson, 2001: The Relationship between the Meridional Profile of Zonal mean Geostrophic Wind and Station Wave at 500 hPa, ADVANCES IN ATMOSPHERIC SCIENCES, 18, 692-700.
    [13] HOU Tuanjie, Fanyou KONG, CHEN Xunlai, LEI Hengchi, HU Zhaoxia, 2015: Evaluation of Radar and Automatic Weather Station Data Assimilation for a Heavy Rainfall Event in Southern China, ADVANCES IN ATMOSPHERIC SCIENCES, 32, 967-978.  doi: 10.1007/s00376-014-4155-7
    [14] Zhaoliang ZENG, Zemin WANG, Minghu DING, Xiangdong ZHENG, Xiaoyu SUN, Wei ZHU, Kongju ZHU, Jiachun AN, Lin ZANG, Jianping GUO, Baojun ZHANG, 2021: Estimation and Long-term Trend Analysis of Surface Solar Radiation in Antarctica: A Case Study of Zhongshan Station, ADVANCES IN ATMOSPHERIC SCIENCES, 38, 1497-1509.  doi: 10.1007/s00376-021-0386-6
    [15] P. Ernest Raj, P.C.S. Devara, 1997: Seasonal Variations in the Vertical Structure of Water Vapor Optical Depth in the Lower Troposphere over a Tropical Station, ADVANCES IN ATMOSPHERIC SCIENCES, 14, 103-110.  doi: 10.1007/s00376-997-0062-5
    [16] P. Ernest Raj, P.C.S. Devara, 1997: Seasonal Variations in the Vertical Structure of Water Vapor Optical Depth in the Lower Troposphere over a Tropical Station, ADVANCES IN ATMOSPHERIC SCIENCES, 14, 425-432.  doi: 10.1007/s00376-997-0049-2
    [17] ZHAO Tianbao, FU Congbin, 2006: Comparison of Products from ERA-40, NCEP-2, and CRU with Station Data for Summer Precipitation over China, ADVANCES IN ATMOSPHERIC SCIENCES, 23, 593-604.  doi: 10.1007/s00376-006-0593-1
    [18] ZHOU Lian-Tong, HUANG Ronghui, 2010: An Assessment of the Quality of Surface Sensible Heat Flux Derived from Reanalysis Data through Comparison with Station Observations in Northwest China, ADVANCES IN ATMOSPHERIC SCIENCES, 27, 500-512.  doi: 10.1007/s00376-009-9081-8
    [19] Qu Shaohou, Takashi Yamanouchi, 1991: Variations of Atmospheric Carbon Dioxide Concentration and Greenhouse Effect at Syowa Station (69o00’S, 39o35’E), Antarctica, ADVANCES IN ATMOSPHERIC SCIENCES, 8, 363-368.  doi: 10.1007/BF02919619
    [20] Jiajia Jia, Zhaoliang Zeng, Wenqian Zhang, Xiangdong Zheng, Yaqiang Wang, Minghu Ding, 2023: How well do the downward shortwave radiation products from satellite and reanalysis over the transect of Zhongshan Station to Dome A, East Antarctica?, ADVANCES IN ATMOSPHERIC SCIENCES.  doi: 10.1007/s00376-023-3136-0

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Manuscript History

Manuscript received: 10 July 1991
Manuscript revised: 10 July 1991
通讯作者: 陈斌, bchen63@163.com
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Relaxation Time and Conductivity at a Rural Station: Raichur

  • 1. Indian Institute of Tropical Meteorology Pune-411 008, India,Indian Institute of Tropical Meteorology Pune-411 008, India,Indian Institute of Tropical Meteorology Pune-411 008, India

Abstract: An examination of decay and growth rates of electric field near the ground during total solar eclipse of 16 Febru-ary 1980 was made to study the electrical relaxation time and conductivity at Raichur. The values obtained i.e., 1320 seconds and 67.1163 10-16 mhos m-1 of the two parameters were in fair agreement with the reported ones at the rural locations.

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