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Squall Line and Its Vertical Motion Under Different Moisture Profiles in Eastern China

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【作者】 郑淋淋; 孙建华; 张娇; 邱学兴; 姚晨;

【Author】 ZHENG Lin-lin;SUN Jian-hua;ZHANG Jiao;QIU Xue-xing;YAO Chen;Anhui Meteorological Observatory;Anhui Institute of Meteorological Sciences;Anhui Province Key Laboratory of Atmospheric Science and Satellite Remote Sensing;Institute of Atmospheric Physics, Chinese Academy of Sciences;University of Chinese Academy of Sciences;

【通讯作者】 孙建华;

【机构】 Anhui Meteorological Observatory; Anhui Institute of Meteorological Sciences; Anhui Province Key Laboratory of Atmospheric Science and Satellite Remote Sensing; Institute of Atmospheric Physics, Chinese Academy of Sciences; University of Chinese Academy of Sciences;

【摘要】 The impacts of different moisture profiles on the structure and vertical motion of squall lines were investigated by conducting a set of numerical simulations. The base state was determined by an observational sounding,with high precipitable water representing moist environmental conditions in the East Asian monsoon region. To reveal the impact of moisture at different levels, the moisture content at the middle and low levels were changed in the numerical simulations. The numerical results showed that more convective cells developed and covered a larger area in the high moisture experiments, which was characteristic of the convection during the Meiyu season in China. In addition,high moisture content at low levels favored the development of updrafts and triggered convection of greater intensity.This was demonstrated by the thermodynamic parameters, including Convective Available Potential Energy(CAPE),Lifted Index(LI), Lift Condensation Level(LCL), and Level of Free Convection(LFC). Dry air at middle levels led to strong downdrafts in the environment and updrafts in clouds. This could be because dry air at middle levels favors the release of latent heat, thereby promoting updrafts in clouds and downdrafts in the environment. Therefore, high relative humidity(RH) at low levels and low RH at middle levels favors updrafts in the cloud cores. Additionally, moist air at low levels and dry air at middle levels promotes the development of convective cells and the intensification of cold pool.The squall line can be organized by the outflow boundary induced by cold pool. The balance of cold pool and environmental wind shear is favorable for the maintenance and strengthening of squall lines.

【Abstract】 The impacts of different moisture profiles on the structure and vertical motion of squall lines were investigated by conducting a set of numerical simulations. The base state was determined by an observational sounding,with high precipitable water representing moist environmental conditions in the East Asian monsoon region. To reveal the impact of moisture at different levels, the moisture content at the middle and low levels were changed in the numerical simulations. The numerical results showed that more convective cells developed and covered a larger area in the high moisture experiments, which was characteristic of the convection during the Meiyu season in China. In addition,high moisture content at low levels favored the development of updrafts and triggered convection of greater intensity.This was demonstrated by the thermodynamic parameters, including Convective Available Potential Energy(CAPE),Lifted Index(LI), Lift Condensation Level(LCL), and Level of Free Convection(LFC). Dry air at middle levels led to strong downdrafts in the environment and updrafts in clouds. This could be because dry air at middle levels favors the release of latent heat, thereby promoting updrafts in clouds and downdrafts in the environment. Therefore, high relative humidity(RH) at low levels and low RH at middle levels favors updrafts in the cloud cores. Additionally, moist air at low levels and dry air at middle levels promotes the development of convective cells and the intensification of cold pool.The squall line can be organized by the outflow boundary induced by cold pool. The balance of cold pool and environmental wind shear is favorable for the maintenance and strengthening of squall lines.

【基金】 National Natural Science Foundation of China(41705029,41675045);Strategic Priority Research Program of Chinese Academy of Sciences (XDA17010105);Key R&D Projects of Anhui Province (201904a07020099)
  • 【文献出处】 Journal of Tropical Meteorology ,热带气象学报(英文版) , 编辑部邮箱 ,2020年03期
  • 【分类号】P433
  • 【下载频次】38
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