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Impact of 4DVAR Assimilation of Rainfall Data on the Simulation of Mesoscale Precipitation Systems in a Mei-yu Heavy Rainfall Event

机译:梅雨强降雨事件中降雨数据的4DVAR同化对中尺度降水系统模拟的影响

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摘要

The multi-scale weather systems associated with a mei-yu front and the corresponding heavy precipitation during a particular heavy rainfall event that occurred on 4-5 July 2003 in east China were successfully simulated through rainfall assimilation using the PSU/NCAR non-hydrostatic, mesoscale, numerical model (MM5) and its four-dimensional, variational, data assimilation (4DVAR) system. For this case, the improvement of the process via the 4DVAR rainfall assimilation into the simulation of mesoscale precipitation systems is investigated. With the rainfall assimilation, the convection is triggered at the right location and time, and the evolution and spatial distribution of the mesoscale convective systems (MCSs) are also more correctly simulated. Through the interactions between MCSs and the weather systems at different scales,including the low-level jet and mei-yu front, the simulation of the entire mei-yu weather system is significantly improved, both during the data assimilation window and the subsequent 12-h period. The results suggest that the rainfall assimilation first provides positive impact at the convective scale and the influences are then propagated upscale to the meso- and sub-synoptic scales.Through a set of sensitive experiments designed to evaluate the impact of different initial variables on the simulation of mei-yu heavy rainfall, it was found that the moisture field and meridional wind had the strongest effect during the convection initialization stage, however, after the convection was fully triggered,all of the variables at the initial condition seemed to have comparable importance.
机译:通过使用PSU / NCAR非静水力进行的降雨同化,成功地模拟了2003年7月4-5日在华东发生的与梅雨锋相关的多尺度天气系统以及相应的强降雨事件中的相应强降水。中尺度数值模型(MM5)及其四维变化数据同化(4DVAR)系统。对于这种情况,研究了通过4DVAR降雨同化将过程改进为中尺度降水系统的模拟。随着降雨的同化,对流在适当的位置和时间触发,并且中尺度对流系统(MCS)的演化和空间分布也得到了更正确的模拟。通过MCS与不同尺度(包括低空急流和梅雨锋)的天气系统之间的相互作用,整个梅雨天气系统的模拟在数据同化窗口和随后的12- h期。结果表明,降雨同化首先在对流尺度上产生积极影响,然后将影响扩展到中尺度和亚天气尺度。通过一组敏感的实验旨在评估不同初始变量对模拟的影响在梅雨的强降雨过程中,发现在对流初始化阶段,湿度场和子午风的影响最强,但是,在对流完全触发后,初始条件下的所有变量似乎都具有相当的重要性。

著录项

  • 来源
    《大气科学进展(英文版)》 |2007年第2期|281-300|共20页
  • 作者

  • 作者单位

    Key Lab of Mesoscale Severe Weather/MOE and Department of Atmospheric Sciences,Nanjing University, Nanjing 210093;

    Key Lab of Mesoscale Severe Weather/MOE and Department of Atmospheric Sciences,Nanjing University, Nanjing 210093;

    School of Meteorology and Center for Analysis and Prediction of Storms, University of Oklahoma,Norman, OK 73019, USA;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 大气科学(气象学);
  • 关键词

    4DVAR, rainfall assimilation impact, mesoscale convective system, mei-yu heavy rainfall;

    机译:4DVAR;降雨同化影响;中尺度对流系统;梅雨强降雨;
  • 入库时间 2022-08-19 03:55:55
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