...
首页> 外文期刊>Dynamics of Atmospheres and Oceans >Simulation of a mesoscale convective system over Northern India: Sensitivity to convection partitioning in a regional NWP model
【24h】

Simulation of a mesoscale convective system over Northern India: Sensitivity to convection partitioning in a regional NWP model

机译:印度北部Mesoscale对流系统的模拟:区域NWP模型中对流分区的敏感性

获取原文
获取原文并翻译 | 示例
           

摘要

Simulations of a mesoscale convective system (MCS), which propagated across Northern India on 2nd May 2018 - leading to many fatalities when the gust front knocked down homes and tore apart building roofs - have been performed using the National Centre for Medium Range Weather Forecasting (NCMRWF) Unified Model - Regional (4 km horizontal grid spacing), to evaluate the model's convective treatments. Though the model captures many of the qualitative and quantitative features, it slightly lags behind the observed MCS organisation and movement, produces lesser precipitation, and lacks the spatial separation between two adjacent organised convective systems in the satellite observations - leading to a faintly offset MCS track. Sensitivity simulations are then performed, for this non-equilibrium MCS case, with different partitioning between parametrized and explicit convection to assess the reliance of the convective treatments on the large-scale environment, as well as to test the notion of a breakdown of convective parametrization at the mesoscale model resolution. Fully parametrized (FP) convection produces even lesser rainfall and are dominated by orographic precipitations along the foot hills of Himalayas with no any trace of the MCS. Fully explicit (FE) convection realistically simulates most of the prominent convective cells and enhance precipitation along the MCS track that agree better with the observations, though the `two lobes' of intense precipitation are not resolved; instead it produces a squall line of precipitation. The FE configuration generates the most vigorous convective updraft, along with a vertical shear that is tilted westward. The simulation with partially parametrized and partially explicit convection resembles the fashion in the FP and FE scenarios, with a transition over the duration of the run from parametrized to explicit precipitation. The results are in line with the notion from previous studies; that the majority of successful explicit simulations of mesoscale organisation are those associated with strong large-scale forcing for convection, wherein resolved vertical motions are sufficient to minimise delays in onset.
机译:2018年5月2日在印度北部传播的MES尺度对流系统(MCS)的模拟 - 在阵风前线撞击房屋和撕裂的建筑物屋顶时,这是使用国家中范围天气预报( NCMRWF)统一模型 - 区域(4 km水平网格间距),评估模型的对流治疗。虽然该模型捕获了许多定性和定量特征,但它背后略微滞后于观察到的MCS组织和运动,产生较小的降水,缺乏卫星观测中的两个相邻有组织的对流系统之间的空间分离 - 导致微弱的偏移MCS轨道。然后对该非平衡MCS案例进行敏感性模拟,具有不同的分区,在参数化和显式对流之间进行不同的分区,以评估对流处理对大规模环境的依赖,以及测试对流参数化的故障的概念在Messcale模型分辨率下。全部参数化(FP)对流会产生较小的降雨,并以喜马拉雅山脚山的地理沉淀为主,没有任何MCS的痕迹。完全明确(​​FE)对流现实地模拟大多数突出的对流细胞,并沿着MCS轨道增强降水,这与观察结果更好,尽管没有解决的强烈降水的“两个裂片”;相反,它产生了一个Quall沉淀线。 Fe配置产生最剧烈的对流上升器,以及向西倾斜的垂直剪切。利用部分参数化和部分显式对流的模拟类似于FP和FE场景中的时尚,其过渡在从参数化到显式降水的持续时间。结果符合以前研究的概念;其中大多数成功的Mesoscale组织模拟是与对流的强大大规模相关的那些,其中解决的垂直运动足以最小化发作的延迟。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号