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首页> 外文期刊>Journal of the Atmospheric Sciences >Connections between potential vorticity intrusions and convection in the eastern tropical pacific
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Connections between potential vorticity intrusions and convection in the eastern tropical pacific

机译:东部热带太平洋潜在涡度侵入与对流之间的联系

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摘要

The connections between intrusions of stratospheric air into the upper troposphere and deep convection in the tropical eastern Pacific are examined using a combination of data analysis, potential vorticity (PV) inversion, and numerical simulations. Analysis of NCEP-NCAR reanalyses and satellite measurements of outgoing longwave radiation during intrusion events shows increased cloudiness, lower static stability, upward motion, and a buildup of convective available potential energy (CAPE) at the leading edge of the intruding tongue of high PV. Potential inversion inversion calculations show that the upper-level PV makes the dominant contribution to the changes in the quantities that characterize convection. This supports the hypothesis that upper-level PV anomalies initiate and support convection by destabilizing the lower troposphere and causing upward motion ahead on the PV tongue. The dominant role of the upper-level PV is confirmed by simulations using the fifth-generation Pennsylvania State University-NCAR Mesoscale Model (MM5). Convection only occurs when the upper-level PV anomaly is present in the simulations, and the relative contribution of the upper-level PV to changes in the quantities that characterize convection is similar to that inferred from the PV inversion calculations.
机译:利用数据分析,潜在涡度(PV)反演和数值模拟相结合的方法,研究了平流层空气侵入对流层高层与热带东太平洋深对流之间的联系。对NCEP-NCAR重新分析的分析和入侵事件期间向外长波辐射的卫星测量结果显示,混浊度增加,静态稳定性降低,向上运动,并且在高PV侵入舌头的前沿积累了对流可用势能(CAPE)。潜在的反演反演计算表明,高层PV对对流特征量的变化起主要作用。这支持以下假设:上层PV异常通过使下对流层不稳定并使PV舌头向前运动而启动并支持对流。使用第五代宾夕法尼亚州立大学-NCAR中尺度模型(MM5)进行的仿真证实了上层PV的主导作用。对流仅在模拟中存在上层PV异常时才会发生,并且上层PV对表征对流的量变化的相对贡献类似于从PV反演计算得出的结果。

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