Dynamical and Microphysical Retrieval from Simulated Doppler Radar Observations Using the 4DVAR Assimilation Technique

被引:3
|
作者
许小永
刘黎平
郑国光
机构
[1] Beijing 100081
[2] Chinese Academy of Meteorological Sciences
[3] China Meteorological Administration
关键词
Doppler radar; 4DVAR assimilation; retrieval; cost function;
D O I
暂无
中图分类号
P426.5 [云];
学科分类号
0706 ; 070601 ;
摘要
Based on a cloud model and the four-dimensional variational (4DVAR) data assimilation method developed by Sun and Crook (1997), simulated experiments of dynamical and microphysical retrieval from Doppler radar data were performed. The 4DVAR data assimilation technique was applied to a cloud scale model with a warm rain parameterization scheme. The 3D wind, thermodynamical, and microphysical fields were determined by minimizing a cost function, defined by the difference between both radar observed radial velocities and reflectivities and their model predictions. The adjoint of the numerical model was used to provide the gradient of the cost function with respect to the control variables. Experiments have demonstrated that the 4DVAR assimilation method is able to retrieve the detailed structure of wind, thermodynamics, and microphysics by using either dual-Doppler or single-Doppler information. The quality of retrieval depends strongly on the magnitude of constraint with respect to the variables. Retrieving the temperature field, cloud water and water vapor is more difficult than the recovery of the wind field and rainwater. Accurate thermodynamic retrieval requires a longer assimilation period. The inclusion of a background term, even mean fields from a single sounding, helped reduce the retrieval errors. Less accurate velocity fields were obtained when single-Doppler data were used. It was found that the retrieved velocity is sensitive to the location of the retrieval domain relative to the radars while the other fields have very little changes. Two radar volumetric scans are generally adequate for providing the evolution, although the use of additional volumes improves the retrieval. As the amount of the observations decreases, the performance of the retrieval is degraded. However, the missing observations can be compensated by adding a background term to the cost function. The technique is robust to random errors in radial velocity and calibration errors in reflectivity. The boundary conditions from the dual-Doppler synthesized winds are sufficient for the retrieval. When the retrieval is mainly controlled by the observations in the regions away from the boundaries, the simple boundary conditions from velocity azimuth display (VAD) analysis are also available. The microphysical retrieval is sensitive to model errors.
引用
收藏
页码:160 / 173
页数:14
相关论文
共 50 条
  • [1] Mesoscale Structure of Rainstorm Retrieved from Dual-Doppler Radar Observations Using the 4DVAR Assimilation Technique
    许小永
    刘黎平
    郑国光
    [J]. Journal of Meteorological Research, 2006, (03) : 334 - 351
  • [2] A Simple 4DVar Scheme of Doppler Radar Observations
    Zhao Yanlai
    Huang Sixun
    Fan Hongjun
    [J]. PROCEEDINGS OF THE 2010 INTERNATIONAL CONFERENCE ON APPLICATION OF MATHEMATICS AND PHYSICS, VOL 1: ADVANCES ON SPACE WEATHER, METEOROLOGY AND APPLIED PHYSICS, 2010, : 122 - 126
  • [3] Assimilation of no-precipitation observations from Doppler radar with 4DVar and its impact on summertime convective event prediction
    Gao, Shibo
    Min, Jinzhong
    Yu, Haiqiu
    [J]. ATMOSPHERIC RESEARCH, 2021, 257
  • [4] Impacts of 4DVAR Assimilation of Airborne Doppler Radar Observations on Numerical Simulations of the Genesis of Typhoon Nuri (2008)
    Li, Zhan
    Pu, Zhaoxia
    Sun, Juanzhen
    Lee, Wen-Ciau
    [J]. JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY, 2014, 53 (10) : 2325 - 2343
  • [5] Microphysical Retrieval from Doppler Radar Reflectivity Using Variational Data Assimilation
    李永平
    朱国富
    薛纪善
    [J]. Journal of Meteorological Research, 2006, (01) : 20 - 27
  • [6] 4DVAR assimilation of multi-parameter radar observations in an explicit cloud model
    Wu, B
    Verlinde, J
    Sun, JZ
    [J]. 28TH CONFERENCE ON RADAR METEOROLOGY, 1997, : 532 - 533
  • [7] Dynamical and microphysical retrieval from Doppler radar observations using a cloud model and its adjoint .1. Model development and simulated data experiments
    Sun, JZ
    Crook, NA
    [J]. JOURNAL OF THE ATMOSPHERIC SCIENCES, 1997, 54 (12) : 1642 - 1661
  • [8] Enhancing the Assimilation of SWOT Simulated Observations Using a Multi-Scale 4DVAR Method in Regional Ocean Modeling System
    Zhou, Chaojie
    Cui, Wei
    Sun, Ruili
    Huang, Ying
    Zhuang, Zhanpeng
    [J]. REMOTE SENSING, 2024, 16 (05)
  • [9] Assimilation of ASCAT Winds using 4DVAR: An Impact study
    Srinivas, Desamsetti
    Rani, Indira S.
    Mallick, Swapan
    George, John P.
    [J]. REMOTE SENSING AND MODELING OF THE ATMOSPHERE, OCEANS, AND INTERACTIONS VI, 2016, 9882
  • [10] Dynamical and microphysical retrievals from Doppler radar observations of a deep convective cloud
    [J]. Verlinde, J. (verlinde@essc.psu.edu), 1600, American Meteorological Society (57):