參考文獻 |
朱瑞鼎、陳昭銘、張家治,2017:“臺南地區弱綜觀天氣之降雨分析”,106 年中央氣象局天氣分析與預報研討會。
林品芳、張保亮、周仲島,2012:“弱綜觀環境下臺灣午後熱對流特徵及其客觀預報”, 大氣科學,40 卷,77-108。
陳薇鈞、陳台琦、林沛練、馮雅茜,2013:“2008 年西南氣流實驗 IOP8 雷達折射指數場特性之研究”, 大氣科學,41 卷,117-138。
Bean, B. R., and E. J. Dutton, 1968: Radio Meteorology. Dover Publications, 435 pp.
Besson, L., C. Boudjabi, O. Caumont, and J. Parent du Chatelet, 2012: Links between weather phenomena and characteristics of refractivity measured by precipitation radar. Bound. Layer Meteor., 143, 77–95.
Bodine, D., D. Michaud, R. D. Palmer, P. L. Heinselman, J. Brotzge, N. Gasperoni, B. L. Cheong, M. Xue, and J. Gao, 2011: Understanding radar refractivity: Sources of uncertainty. J. Appl. Meteor. Climatol., 50, 2543–2560.
——, P. L. Heinselman, B. L. Cheong, R. D. Palmer, and D. Michaud, 2010: A case study on the impact of moisture variability on convection initiation using radar refractivity retrievals. J. Appl. Meteor. Climatol., 49, 1766–1778.
Buban, M. S., C. L. Ziegler, E. N. Rasmussen, and Y. P. Richardson, 2007: The dryline on 22 May 2002 during IHOP: Ground-radar and in situ data analyses of the dryline and boundary layer evolution. Mon. Wea. Rev., 135, 2473–2505.
Chang, C. P., and G. T. Chen, 1995: “Tropical circulation associated with southwest monsoon onset and westerly surges over the South China Sea”. Mon. Wea. Rev., 123, 3254-3267.
Chen, T.-C. , M.-C. Yen, J.-D. Tsay, C.-C. Liao, and E. S. Takle, 2014: Impact of Afternoon Thunderstorms on the Land–Sea Breeze in the Taipei Basin during Summer: An Experiment. J. Appl. Meteor. Climatol., 53, 1714–1738.
Cheong, B. L., R. D. Palmer, C. D. Curtis, T.-Y. Yu, D. S. Zrnic´, and D. Forsyth, 2008: Refractivity retrieval using the Phased Array Radar: First results and potential for multi-function operation. IEEE Trans. Geosci. Remote Sens., 46, 2527–2537.
Crook, N. A., 1996: Sensitivity of moist convection forced by boundary layer processes to low-level thermodynamic fields. Mon. Wea. Rev., 124, 1767–1785.
Creese, C.W., 1999: Meteorological Interpretation of Near-surface Refractivity Measurements. M.Sc thesis, McGill University, 83 pp.
Dabberdt, W. F., and T. W. Schlatter, 1996: Research opportUnities from emerging atmospheric observing and modeling capabilities. Bull. Amer. Meteor. Soc., 77, 305–323.
Demoz, B., C. Flamant, T. Weckwerth, D. Whiteman, K. Evans, F. Fabry, P. Di Girolamo, D. Miller, B. Geerts, W. Brown, G. Schwemmer, B. Gentry, W. Felts, and Z. Wang, 2006: The dryline on 22 May 2002 during IHOP: Convective-scale measurements at the profiling site. Mon. Wea. Rev., 134, 294–310.
Fabry, F., 2004: Meteorological value of ground target measurements by radar. J. Atmos. Oceanic Technol., 21, 560–573.
——, 2006: The spatial variability of moisture in the boundary layer and its effect on convection initiation: Project-long characterization. Mon. Wea. Rev., 134, 79–91.
——, and C. R. Pettet, 2003: A Primer to the Interpretation of Refractivity Imagery during IHOP_2002. International H20 Project (IHOP) 2002, IHOP_2002 Refractivity Manuai, 1-11 pp.
——, and J. Sun, 2010: For how long should what data be assimilated for the mesoscale forecasting of convection and why? Part I: On the propagation of initial condition errors and their implications for data assimilation. Mon. Wea. Rev., 138. 242–255.
——, C. Frush, I. Zawadzki, and A. Kilambi, 1997: On the extraction of near-surface index of refraction using radar phase measurements from ground targets. J. Atmos. Oceanic Technol., 14, 978–987.
Feng, Y.-C., 2017: The essential problem of radar-estimated refractivity-Quantifying its biases and errors. Ph.D. thesis, McGill University, 103 pp.
——, and F. Fabry, 2018: Quantifying the Error of Radar-Estimated Refractivity by
Multiple Elevation and Dual-Polarimetric Data. J. Atmos. Oceanic Technol., 35, 1897-1911
——, ——, and T. M. Weckwerth, 2016: Improving radar refractivity retrieval by considering the change in the refractivity profile and the varying altitudes of ground targets. J. Atmos. Oceanic Technol., 33, 989–1004.
Fritz, J., and V. Chandrasekar, 2009: Implementation and analysis of networked radar refractivity retrieval. J. Atmos. Oceanic Technol., 26, 2123–2135.
Gasperoni, N. A., M. Xue, R. D. Palmer, and J. Gao, 2013: Sensitivity of convective initiation prediction to near-surface moisture when assimilating radar refractivity: Impact tests using OSSEs. J. Atmos. Oceanic Technol., 30, 2281–2302.
Hao, Y., D. Goeckel, R. Janaswamy, and S. Frasier, 2006: Surface refractive index field estimation from multiple radars. Radio Sci., 41, RS3002.
Heinselman, P. L., B. L. Cheong, R. D. Palmer, D. Bodine, and K. Hondl, 2009: Radar refractivity retrievals in Oklahoma: Insights into operational benefits and limitations. Wea. Forecasting, 24, 1345–1361.
Lin, P.-F., P.-L. Chang, B. J.-D. Jou, J. W. Wilson, and R. D. Roberts, 2011: Warm season afternoon thunderstorm characteristics under weak synoptic-scale forcing over Taiwan Island. Wea. Forecasting, 26, 44–60.
Montmerle, T., A. Caya, and I. Zawadzki, 2002: Short-term numerical forecasting of a shallow storms complex using bistatic and single-Doppler radar data. Wea. Forecasting, 17, 1211–1225,
National Research Council, 1998: The Atmospheric Sciences: Entering the Twenty-First Century. National Academy Press, 364 pp.
Nicol, J. C., and A. J. Illingworth, 2013: The effect of phase correlated returns and spatial smoothing on the accuracy of radar refractivity retrievals. J. Atmos. Oceanic Technol., 30, 22–39.
——, ——, T. Darlington, and M. Kitchen, 2013: Quantifying errors due to frequency changes and target location uncertainty for radar refractivity retrievals. J. Atmos. Oceanic Technol., 30, 2006–2024.
——, ——, and K. Bartholomew, 2014: The potential of 1 h refractivity changes from an operational C-band magnetron-based radar for numerical weather prediction validation and data assimilation. Quart. J. Roy. Meteor. Soc., 140, 1209–1218.
Park, S., 2004: Water vapor Estimation Using Near-Surface Radar Refractivity during IHOP_2002. M.Sc. thesis, McGill University, 77 pp.
——, and F. Fabry, 2010: Simulation and interpretation of the phase data used by the radar refractivity retrieval algorithm. J. Atmos. Oceanic Technol., 27, 1286–1301.
Roberts, R. D., and Coauthors, 2008: REFRACTT-2006: Real-time retrieval of high-resolution low-level moisture fields from operational NEXRAD and research radars. Bull. Amer. Meteor. Soc., 89, 1535–1548.
Smith, E. K., and S. Weintraub, 1953: The constants in the equation for atmospheric refractive index at radio frequencies. Proc. IRE, 41, 1035–1037.
Stull, R. B., 1988: An Introduction to Boundary Layer Meteorology. Kluwer Academic, 666 pp.
Sun, J., 2005: Convective-scale assimilation of radar data: Progress and challenges. Quart. J. Roy. Meteor. Soc., 131, 3439–3463.
Talbot, C., P. Augustin, C. Leroy, V. Willart, H. Delbarre, and G. Khomenko, 2007: Impact of a sea breeze on the boundary layer dynamics and the atmospheric stratification in a coastal area of the North Sea. Bound.-Layer Meteor., 125, 133–154.
Tu, C.-C., Y.-L. Chen, P.-L. Lin, and Y. Du, 2019: Characteristics of the Marine Boundary Layer Jet over the South China Sea during the Early Summer Rainy Season of Taiwan. Mon. Wea. Rev., 147, 457-475.
Wakimoto, R. M., and H. V. Murphey, 2010: Frontal and radar refractivity analyses of the dryline on 11 June 2002 during IHOP. Mon. Wea. Rev., 138, 228–241.
Weckwerth, T. M., 2000: The effect of small-scale moisture variability on thunderstorm initiation. Mon. Wea. Rev., 128, 4017–4030.
——, V. Wulfmeyer, R. M. Wakimoto, R. M. Hardesty, J. W. Wilson, and R. M. Banta, 1999: NCAR–NOAA lower-tropospheric water vapor workshop. Bull. Amer. Meteor. Soc., 80, 2339–2357.
——, C. R. Pettet, F. Fabry, S. J. Park, M. A. LeMone, and J. W. Wilson, 2005: Radar refractivity retrieval: Validation and application to short-term forecasting. J. Appl. Meteor., 44, 285–300.
Xu, W., E. J. Zipser, Y.-L. Chen, C. Liu, Y.-C. Liou, W.-C. Lee, and B. J.-D. Jou, 2012: An orography-associated extreme rainfall event during TiMREX: Initiation, storm evolution, and maintenance. Mon. Wea. Rev., 140, 2555–2574.
|