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On the effects of large-scale environment and surface types on convective cloud characteristics over Darwin, Australia

机译:On the effects of large-scale environment and surface types on convective cloud characteristics over Darwin, Australia

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摘要

Two seasons of Darwin, Australia, C-band polarimetric (CPOL) research radar, radiosoundings, and lightning data are examined to study the relative influence of the large-scale atmospheric regimes and the underlying surface types on tropical convective cloud properties and their diurnal evolution. The authors find that in the ''deep westerly'' regime, which corresponds to the monsoon period, the convective cloud occurrence rate is highest, consistent with its highest relative humidity. However, these convective clouds have relatively low cloud-top heights, smaller-than-average cell volumes, and are electrically least active. In this regime, the cloud cell volume does not vary significantly across different underlying surfaces and afternoon convective activity is suppressed. Thus, the picture emerging is that the convective cloud activity in the deep westerly regime is primarily regulated by the large-scale conditions. The remaining regimes (''easterly,'' ''shallow westerly,'' and ''moist easterly'') also demonstrate strong dependence on the large-scale forcingand a secondary dependence on the underlying surface type. The easterly regime has a small convective cloud occurrence rate and low cloud heights but higher lightning counts per convective cloud. The other two regimes have moderate convective cloud occurrence rates and larger cloud sizes. The easterly, shallow westerly, and moist easterly regimes exhibit a strong, clearly defined semidiurnal convective cloud occurrence pattern, with peaks in the early morning and afternoon periods. The cell onset times in these three regimes depend on the combination of local time and the underlying surface.

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  • 来源
    《Monthly weather review》 |2013年第4期|1358-1374|共17页
  • 作者单位

    School of Mathematical Sciences, Monash University, Centre for Australian Weather and Climate Research, Melbourne, VIC, Australia;

    Centre for Australian Weather and Climate Research, Melbourne, VIC, Australia;

    School of Mathematical Sciences, Monash University, Melbourne, VIC, AustraliaUniversité Sciences et Technologie de Lille, UFR de Physique Batiment P5 Laboratoire d'optique Atmosphérique, Lille, FranceSchool of Engineering and Physics, The University of the South Pacific, Fiji;

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  • 正文语种 英语
  • 中图分类 大气科学(气象学);
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