双月刊

ISSN 1006-9895

CN 11-1768/O4

四川盆地一次暴雨过程中的穿透性对流形成机理分析
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1.南京信息工程大学气象灾害教育部重点实验室/气候与环境变化国际合作联合实验室;2.中国科学院大气物理研究所云降水物理与强风暴实验室

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中国科学院战略性先导科技专项(XDA17010105),国家自然科学基金项目(42175012,41975137,42175003),国家重点研发计划项目(2017YFC1502002)


Analysis about the Formation Mechanism of Overshooting Convection during a Rainstorm in Sichuan Basin
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Affiliation:

1.Key Laboratory of Cloud–Precipitation Physics and Severe Storms,Institute of Atmospheric Physics,Chinese Academy of Sciences;2.Key Laboratory of Meteorological Disaster of Ministry of Education KLME/Joint International Research Laboratory of Climate and Environment Change ILCEC,Nanjing University of Information Science and Technology

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    摘要:

    2019年8月18日至22日,高原东侧到四川盆地西部发生的一次暴雨过程与穿透性对流的发生发展密切相关。为揭示此次穿透性对流的形成机理和过程,本文利用欧洲中心再分析资料ERA5以及高分辨数值模式(WRF)的模拟结果进行了分析。结果表明,此次穿透性对流过程发生在中国沿海地区大范围对流层顶折叠导致盆地以东的上空出现平流层位涡(PV)下传的特殊天气背景下。穿透性对流的形成主要分为三个阶段:(1)中低层对流的触发。由于大陆高压西伸,四川盆地附近气压梯度加强引起低空急流发展,在其左侧产生气旋性切变,同时引起与高原东南侧大地形正交的抬升气流分量增强。地形动力抬升叠加气流辐合抬升在不稳定层结下触发对流。(2)对流层高层上升运动发展。这主要与湍流扩散导致的平流层持续下传的PV气团在非绝热加热作用下的发展有关。高层东风气流背景下,正PV异常的右侧为上升运动,使得300 hPa以上至下平流层出上升运动的发展增强。(3)盆地附近的高中低层上升运动垂直耦合叠加,形成穿透性对流。中尺度对流系统层状模态的发展以及干燥环境下水汽的蒸发冷却导致300 hPa至600 hPa出现下沉运动。下沉运动造成的局地干冷侵入,既加强了上空“下湿上干”的不稳定层结,也加强了中低层的气流辐合,导致原中层300-600 hPa附近的下沉运动转为上升运动。低层由于正涡度倾斜发展,上升运动得以维持。由此,四川盆地上空的上升运动出现整层的垂直叠加耦合,表现为从对流层低层到平流层底的一致性上升运动,穿透性对流形成,导致后期降水增强。

    Abstract:

    A rainstorm in the west of Sichuan Basin was closely related to the occurrence and development of overshooting convection on August 19, 2019. This paper used the ERA5 reanalysis data and high-resolution numerical simulation results of WRF to reveal the formation mechanism of this overshooting convection. The results indicate that this overshooting convection process occurred under a special background that the large-scale tropopause folding in the coastal areas of China resulted in the downward of stratospheric potential vorticity (PV) over the east of Sichuan Basin. Meanwhile, there was a Tibetan plateau vortex on the Tibet Plateau and a Southwest China vortex in the basin. The overshooting convection process can be divided into three stages. (1) The convective initiation. The continental high extended westward, which led to the enhancement of pressure gradient near Sichuan Basin and then caused the low-level jet (LLJ). The cyclonic shear produced by LLJ made the airflow orthogonal to the southeast of the Tibet Plateau strengthen. In the case of the atmospheric instability, the dynamic uplift of terrain and the convergence uplift of airflow triggered the convection. (2) The development of ascending motion in the upper troposphere. The ascending motion in this case mainly related to the PV air-block developing with the diabatic heating. And the generation of PV air-block is from downward transferring of the stratospheric PV persistently resulting from the turbulent activity. The right side of the positive PV anomaly under the easterly flow is usually upward movement, which led to the development and enhancement of ascending motion from 300 hPa to the bottom of stratosphere. (3) The updraft of upper-middle-lower level near the basin was coupled and superimposed to form overshooting convection. The stratiform pattern of Mesoscale Convective System (MCS) and evaporative cooling of water vapor in dry environment caused the downdraft from 300 hPa to 600 hPa. The atmosphere maintained the ascending motion in the upper troposphere, at the same time, dry intrusion occurred in the middle troposphere, which not only intensified the unstable stratification of " upper-layer dry and lower-layer wet " over the basin, but also enhanced the convergence of air flow in the middle and low troposphere, resulting in the downdraft near 300-600 hPa in the middle troposphere turning into updraft. Due to the slantwise vorticity development in the lower layer, the ascending motion can be maintained. As a result, the ascending motion over Sichuan basin appears vertical superposition and coupling, which shows the consistent ascending motion from the lower troposphere to the lower stratosphere and means the formation of overshooting convection and the enhancement of precipitation.

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  • 收稿日期:2021-09-11
  • 最后修改日期:2021-12-29
  • 录用日期:2022-02-21
  • 在线发布日期: 2022-02-23
  • 出版日期: