參考文獻 |
尤心瑜和廖宇慶,2011:使用都卜勒氣象雷達資料改善模式定量降雨預報之可行
性研究-以模擬資料測試之實驗結果。大氣科學,第39 期,1–24。
陳尉豪和廖宇慶,2012:同化多都卜勒雷達資料以改善模式定量降水預報-2008
SoWMEX IOP8 個案分析。大氣科學,第40 期,323-348。
鐘高陞、廖宇慶、陳台琦,2002:由都卜勒風場反演三維熱動力場的可行性研究
-以台灣地區颮線個案為例。大氣科學,第30 期,313–330。
邱健倫,2013:使用氣象雷達改善對流尺度定量降水預報研究 – 理想和真實個
案之分析結果。國立中央大學大氣物理所碩士論文,1-82。
黃沛瑜,2012:使用多部都卜勒/偏極化雷達分析凡那比颱風(2010)的眼牆重建
過程。國立中央大學大氣物理研究所碩士論文,1-90。
蔡宜君,2012:使用偏極化/多都卜勒雷達資料研究莫拉克颱風(2009)地形降雨特
性。國立中央大學大氣物理研究所碩士論文,1-83。
鄧仁星,2000:RASTA(Radar Analysis System for Taiwan Area)使用說明書。
Anthes, R. A., 1983: Regional models of the atmosphere in middle
latitudes. Mon. Wea. Rev., 111, 1306–1330.
Barnes, S. L., 1973: Mesoscale objective map analysis using weighted time
series observation. NOAA Tech. Memo. Erl Nssl-62, 60pp.
Chung, K. S., I. Zawadzki, M. K. Yau, and L. Fillion, 2009: Short-Term
Forecasting of a Midlatitude Convective Storm by the Assimilation of
Single–Doppler Radar Observations. Mon. Wea. Rev., 137, 4115–4135.
Crook, N. A., 1996: The sensitivity of moist convection forced by boundary
layer processes to low-level thermodynamic fields. Mon. Wea. Rev.,
124,1767–1785.
_____, and J. Sun, 2002: Assimilating radar, surface and profiler data
for the Sydney 2000 Forecast Demonstration Project. J. Atmos. Oceanic
Technol., 19, 888–898.
_____, and _____, 2004: Analysis and forecasting of the low-level wind
during the Sydney 2000 forecast demonstration project. Wea.
Forecasting, 19, 151–167.
Gal-Chen, T., 1978: A method for the initialization of the anelastic
equations: Implications for matching models with observations.
Mon. Wea. Rev., 106, 587–606.
Hu, M., M. Xue, and K. Brewster (2006a), 3DVAR and cloud analysis with
WSR-88D level-II data for the prediction of Fort Worth tornadic
thunderstorms.Part I: Cloud analysis and its impact, Mon. Weather
Rev., 134,675–698.
Hu, M., M. Xue, J. Gao, and K. Brewster (2006b), 3DVAR and cloud analysis
with WSR-88D level-II data for the prediction of Fort Worth tornadic
thunderstorms. Part II: Impact of radial velocity analysis via 3DVAR,
Mon. Weather Rev., 134, 699–721.
Lin, Y.-L., R. D. Farley, and H. D. Orville, 1983: Bulk parameterization
of the snow field in a cloud model. J. Climate Appl. Meteor., 22, 1065–1092.
Lin, Y.-J., H. Shen, T.-C. C. Wang, Z-S. Deng, and R. W. Pasken, 1990:
Characteristics of a subtropical squall line determined from TAMEX
dual-Doppler data. Part II: Dynamic and thermodynamic structures and
momentum budgets. J. Atmos. Sci., 47, 2382–2399.
Liou, Y.-C., 2001: The derivation of absolute potential temperature
perturbations and pressure gradients from wind measurements in
three-dimensional space. J. Atmos. Oceanic Technol., 18, 577–590.
Liou, Y.-C., J.-L. Chiou, W.-H. Chen, H.-Y. Yu, 2014: Improving the model
convective storm quantitative precipitation nowcasting by
assimilating state variables retrieved from multiple-Doppler radar
observations, Mon. Wea. Rev., 142, 4017–4035.
_____, T.-C. Chen Wang, and K. S. Chung, 2003: A three-dimensional
Variational approach for deriving the thermodynamic structure using
Doppler wind observations—An application to a subtropical squall
line. J. Appl.Meteor., 42, 1443–1454.
_____, Y.-J. Chang., 2009: A variational multiple–Doppler radar
three-dimensional wind synthesis method and its impacts on
thermodynamic retrieval. Mon. Wea. Rev., 137, 3992–4010.
Rogers R. R., and M.K. Yau,1989:A short course in cloud physics, Pergamon,
Oxford, England, 293pp.
Roux, F., 1985: Retrieval of thermodynamic fields from multiple-Doppler
radar data using the equations of motion and the thermodynamic
equation. Mon. Wea. Rev., 113, 2142–2157.
_____, 1988: The West African squall line observed on 23 June 1981 during
COPT 81: Kinematics and thermodynamics of the convective region. J.
Atmos.Sci., 45, 406–426.
_____, and J. Sun, 1990: Single-Doppler observations of a West African
squall line on 27–28 May 1981 during COPT 81: Kinematics,
thermodynamics and water budget. Mon. Wea. Rev., 118, 1826–1854.
Schaefer, J. T., 1990: The critical success index as an indicator of
warning skill. Wea. Forecasting, 5, 570-575.
Shapiro, A., S. Ellis, and J. Shaw, 1995: Single-Doppler velocity
retrievals with Phoenix II data: Clear air and microburst wind
retrievals in the planetary boundary layer. J. Atmos. Sci., 52, 1265–
1287.
Snyder, C., and F. Zhang, 2003: Assimilation of simulated Doppler radar
observations with an ensemble Kalman filter. Mon. Wea. Rev., 131,
1663–1677.
Sun, J., and N. A. Crook, 1997: Dynamical and microphysical retrieval from
Doppler radar observations using a cloud model and its adjoint.
Part I: Model development and simulated data experiments. J. Atmos.
Sci., 54,1642–1661.
_____, and _____, 1998: Dynamical and microphysical retrieval from Doppler radar observations using a cloud model and its adjoint. Part II: Retrieval experiments of an observed Florida convective storm. J. Atmos. Sci., 55,835–852.
_____, and _____, 2001: Real-time low-level wind and temperature analysis
using single WSR-88D data. Wea. Forecasting, 16, 117–132.
Tai, S.-L., Y.-C. Liou, J. Sun, S.-F. Chang, and M.-C. Kuo, 2011:
Precipitation Forecast using Doppler Radar Data, a Cloud Model with
Adjoint, and the Weather Research and Forecasting Model–Real Case
Studies during SoWMEX in Taiwan. Wea. Forecasting (Accepted)
Tong, M., and M. Xue, 2005: Ensemble Kalman filter assimilation of Doppler
radar data with a compressible nonhydrostatic model: OSS experiments.
Mon. Wea. Rev., 133, 1789–1807.
Weygandt, S. S., A. Shapiro, and K. K. Droegemeier, 2002a: Retrieval of
model initial fields from single-Doppler observations of a supercell
thunderstorm. Part I: Single-Doppler velocity retrieval. Mon. Wea.
Rev., 130, 433–453.
_____, _____, and _____, 2002b: Retrieval of model initial fields from
single-Doppler observations of a supercell thunderstorm. Part II:
Thermodynamic retrieval and numerical prediction. Mon. Wea.
Rev., 130, 454–476.
Xiao, Q., Y. H. Kuo, J. Sun, W. C. Lee, E. Lim, Y. R. Guo, and D. M. Barker,
2005: Assimilation of Doppler radar observations with a regional
3DVAR System: Impact of Doppler velocities on forecasts of a heavy
rainfall case. J. Appl. Meteor., 44, 768–788.
Xue, M., D.-H. Wang, J.-D. Gao, K. Brewster, and K. K. Droegemeier
(2003), The Advanced Regional Prediction System (ARPS), storm-scale
numerical weather prediction and data assimilation, Meteorol. Atmos.
Phys., 82, 139–170.
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