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Application of Radar Reflectivity Factor in Initializing Cloud-Resolving Mesoscale Model. Part Ⅱ: Numerical Simulation Experiments
引用本文:LIU Hongy,XU Haiming,XUE Jishan,HU Zhijin,SHEN Tongli. Application of Radar Reflectivity Factor in Initializing Cloud-Resolving Mesoscale Model. Part Ⅱ: Numerical Simulation Experiments[J]. , 2008, 22(2): 173-186
作者姓名:LIU Hongy  XU Haiming  XUE Jishan  HU Zhijin  SHEN Tongli
作者单位:[1]Nanjing University of Information Science & Technology, Nanjing 210044; [2]Chinese Academy of Meteorological Sciences, Beijing 100081
基金项目:Supported jointly by the National Natural Science Foundation of China under Grant Nos. 40233036 and 40305001, and the National Basic Research Program of China under Grant No. 2004CB418304.
摘    要:Microphysics elements and vertical velocity retrieved were incorporated using the nudging method into the initial data assimilation of GRAPES (Global/Regional Assimilation and Prediction System) model. Simulation experiments indicated that nudging technique was effective in forcing the model forecast gradually consistent to the observations, yielding the thermodynamically and dynamically balanced analysis field. As viewed from the simulation results, water vapor is vital to precipitation, and it is a governing factor for the amount and duration of precipitation. The initial cloud water, rain water, and vertical velocity determine the strength distribution of convection and precipitation at the beginning time of forecast; the horizontal wind field steers the motion of the mesoscale weather system embedded in and impacts the position of precipitation zone to a large extent. The simulation experiments show that the influence of the initial retrieval data on prediction weakens with the increase of forecast time, and within the first hour of forecast, the retrieval data have an important impact on the evolution of the weather system, but its influence becomes trivial after the first three hours. Changing the nudging coefficient and the integral time-spacing of numerical model will bring some influences to the results. Herein only one radar reflectivity was used, the radar observations did not cover the whole model domain, and some empirical parameters were used in the retrieval method, therefore some differences still lie between simulation and observation to a certain extent, and further studies on several aspects are expected.

关 键 词:雷达  水汽凝结体  气候学  旋压  云层溶解
收稿时间:2008-03-10

Application of Radar Reflectivity Factor in Initializing Cloud-Resolving Mesoscale Model. Part q:Numerical Simulation Experiments
LIU Hongy,XU Haiming,XUE Jishan,HU Zhijin and SHEN Tongli. Application of Radar Reflectivity Factor in Initializing Cloud-Resolving Mesoscale Model. Part q:Numerical Simulation Experiments[J]. Acta Meteorologica Sinica, 2008, 22(2): 173-186
Authors:LIU Hongy  XU Haiming  XUE Jishan  HU Zhijin  SHEN Tongli
Affiliation:Nanjing University of Information Science & Technology, Nanjing 210044;Nanjing University of Information Science & Technology, Nanjing 210044;Chinese Academy of Meteorological Sciences, Beijing 100081;Chinese Academy of Meteorological Sciences, Beijing 100081;Nanjing University of Information Science & Technology, Nanjing 210044
Abstract:Microphysics elements and vertical velocity retrieved were incorporated using the nudging method into the initial data assimilation of GRAPES (Global/Regional Assimilation and Prediction System) model. Simulation experiments indicated that nudging technique was effective in forcing the model forecast gradually consistent to the observations, yielding the thermodynamically and dynamically balanced analysis field. As viewed from the simulation results, water vapor is vital to precipitation, and it is a governing factor for the amount and duration of precipitation. The initial cloud water, rain water, and vertical velocity determine the strength distribution of convection and precipitation at the beginning time of forecast; the horizontal wind field steers the motion of the mesoscale weather system embedded in and impacts the position of precipitation zone to a large extent. The simulation experiments show that the influence of the initial retrieval data on prediction weakens with the increase of forecast time, and within the first hour of forecast, the retrieval data have an important impact on the evolution of the weather system, but its influence becomes trivial after the first three hours. Changing the nudging coefficient and the integral time-spacing of numerical model will bring some influences to the results. Herein only one radar reflectivity was used, the radar observations did not cover the whole model domain, and some empirical parameters were used in the retrieval method, therefore some di erences still lie between simulation and observation to a certain extent, and further studies on several aspects are expected.
Keywords:radar   nudging   nowcasting   cloud-resolving model   hot initiating
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