毫米波测云雷达的特点及其研究现状与展望 您所在的位置:网站首页 毫米波技术特点 毫米波测云雷达的特点及其研究现状与展望

毫米波测云雷达的特点及其研究现状与展望

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[1] Stephens G L, Vane D G, Boain R J, et al. The cloudsat mission and the A-Train-A new dimension of spacebased observations of clouds and precipitation[J].Bulletin of the American Meteorological Society,2002, 83(12): 1 771-1 790. [2] White A B, Fairall C W, Frisch A S, et al. Recent radar measurements of turbulence and microphysical parameters in marine boundary layer clouds[J].Atmospheric Research,1996, 40: 177-221 [3] Kropfli R A, Kelly R D. Meteorological research applications of mm-wave radar[J].Meteorology and Atmospheric Physics, 1996, 59(3/4): 105-121. [4] Kenneth P M, Brooks E M, Post M J, et al. An unattended cloud-profiling radar for use in climate research[J].Bulletin of the American Meteorological Society,1997, 79(3): 443-455. [5] Ralph F M, Nieman P J, de Kamp D W,et al. Using spectra moment data from NOAA′s 404-MHz radar wind profilers to observe precipitation[J].Bulletin of the American Meteorological Society,1995, 76(10): 1 717-1 739. [6] Huang Fang, Chen Hongbin, Wang Zhenhui. Analysis of the atmospheric attenuation at 37GHz and 94GHz[J].Remote Sensing Technology and Application,2003, 18(5): 269-275.[黄芳,陈洪滨,王振会.37GHz和94GHz的大气微波衰减比较分析[J]. 遥感技术与应用, 2003,18(5): 269-275.] [7] Paulsen W H, Petrocchi P J , McLean G. Operational utilization of the AN/TPQ-11 cloud-detection radar[R]. Aie Force Cambridge Research Laboratories, AFCRL-70-0335,1970. [8] Pasqualucci F. Drop size distribution measurements in convective storms with a vertically pointing Doppler radar[J].Radio Science,1984,19: 177-183. [9] Pasqualucci F, Bartram B W , Kropfli R A, et al. A millimeter-wavelength dual-polarization Doppler radar for cloud and precipitation studies[J].Journal of Climate and Applied Meteorology,1983, 22: 758-765. [10] Hobbs P V, Funk N T, Weiss R,et al. Evaluation of a 35-GHz radar for cloud physics research[J].Journal of Atmospheric and Oceanic Technology,1985,2:35-48. [11] Albrecht B A. Aerosols, cloud microphysics and fractional cloudiness[J].Science, 1989, 245: 1 227-1 230. [12] Kropfli R A, Bartram B W, Matrosov S Y. The upgraded WPL dual-polarization 8-mm-wavelength Doppler radar for microphysical and climate research[R]. Proceedings, Conference on Cloud Physics, American Meteorological Society. San Francisco, CA,1990:341-345. [13] Pazmany A, Mclntosh J , Hervig M , et al. 95 GHz polarimetric radar measurements of orographic cap clouds[J].Journal of Atmospheric and Oceanic Technology,1994, 11: 140-153. [14] Clothiaux E E, Miller M A, Albrecht B A, et al. An evaluation of a 94-GHz radar for remote sensing of cloud properties[J].Journal of Atmospheric and Oceanic Technology, 1995,12: 201-228. [15] ARM : Atmospheric Radiation Measurement Program Plan[R]. US Department of Energy DOE/ER-04441, Washington DC, 1990: 116. [16] Lhermitte R. A 94 GHz doppler radar for cloud observations[J].Journal of Atmospheric and Oceanic Technology,1987,4: 36-48. [17] Mead J B, McIntosh R E, Vandemark D, et al. Remote sensing of clouds and fog with A 1.4 mm radar[J].Journal of Atmospheric and Oceanic Technology,1989, 6: 1 090-1 097. [18] Hamazu K, Hashiguchi H, Wakayana T, et al. A 35-GHz scanning doppler radar for fog observations[J]. Journal of Atmospheric and Oceanic Technology,2003,20:972-986. [19] Moran K P, Martner B E, Post M J, et al. An unattended cloud-profiling radar for use in climate research[J].Bulletin of the American Meteorological Society, 1998, 79: 443-455. [20] Sekelsky S M. Particle size estimation in ice-phase clouds using multifrequency radar reflectivity measurements at 95, 33, and 2.8GHz[J].Journal of Applied Meteorology,1999,38: 5-28. [21] O′Connor E J, Illingworth A J , Hogan R J. Retrieving stratocumulus drizzle parameters using doppler radar and lidar[J].Journal of Applied Meteorology,2004, 44:14-27. [22] Danne. Relationships between doppler spectral moments within large-scale cirro- and altostratus cloud fields observed by a ground-based 95-GHz cloud radar[J].Journal of Applied Meteorology,1999, 38: 175-189. [23] Sekelsky S M, Li L, Sadowy G A, et al. Measurements of Atmospheric Extinction Using Combined Airborne and Ground-Based 95 GHz Radar Observations[R]. Proceeding of Intternalional Geoscience and Remote Sensing Symp., Hamburg, Germany, IEEE, 1999: 461-463. [24] Li Lihua, Stephen M S, Steven C R, et al. Retrieval of atmospheric attenuation using combined ground-based and airborne 95-GHz cloud radar measurements[J].Journal of Atmospheric and Oceanic Technology, 2001,18:1 345-1 353. [25] Li Lihua, Heynsfield G M, Lin Tian, et al. A 94-GHz cloud radar system on a NASA high-altitude ER-2 aircraft[J].Journal of Atmospheric and Oceanic Technology,2004, 21:1 378-1 388. [26] Chen Rihua. Application of millimeter-wavelength radar in military[J].Military Electronics,2001,12:72-73.[陈日华.毫米波技术的军事应用[J]. 电子产品世界,2001,12:72-73.] [27] Tong Wuqin, Ling Yongshun, Jiang Jinshui, et al. Application and prospect of military millimeter-wavelength radar[J].Control and Guide, 2004, 26(5): 48-51.[同武勤,凌永顺,蒋金水,等. 军用毫米波雷达的应用及其发展趋势[J]. 控制与制导, 2004, 26(5): 48-51.] [28] Ren Li′na, Qu Yanbin. The application of millimeter-wave and infrared technology in military[J].Infrared Technology,2004, 26(3): 66-74.[任丽娜,曲延滨. 毫米波与红外技术在军事领域中的应用[J]. 红外技术,2004,26(3):66-74.] [29] Shi Xing. The application and development of millimeter-wavelength radar[J].Video Technology,2006,48(1):1-9.[石星. 毫米波雷达的应用和发展[J]. 电视技术,2006,48(1):1-9.] [30] Wei Zhong, Lin Hai, Xi Miaoxin. The capability of millimeter-wavelength radar in observing clouds[J].Acta meteorologica Sinica,1985, 43(3): 378-383.[魏重,林海,忻妙新. 毫米波气象雷达的测云能力[J].气象学报,1985,43(3):378-383.] [31] Petrocchi R J , Paulsen W H. Meteorological Significance of Vertical Density Profiles of Clouds and Precip itation Obtained with the AnöT PQ 211 Radar. Preprint, Twelfth Conf[C]//American Meteorological Society,On Radar Meteorology , Norman,1966: 467-472. [32] Nakamura K, Inomata H. Dual-polarization rain observation by X-and Ka-band dual-wavelength radar[J]. Journal of the Meteorological Society of Japan, 1992,70(8):1 085-1 095. [33] Sekelsky S M , McIntosh R E. Cloud observation with a polarimetric 33GHz and 95GHz radar[J].Meteorology and Atmospheric Physics, 1996, 59:123-140. [34] Haper W G. Examples of cloud detection with 8.6-millimetre radar (Radar resolution capability for cloud detection[J].Meteorology Magazine,1966,95:106-112. [35] Clothiaux E E, Miller M A, Albrecht B A,et al. An evaluation of a 94-GHz radar for remote sensing of cloud properties[J].Journal of Atmospheric and Oceanic Technology, 1995, 12: 201-229. [36] Hollars S, Fu Q, Comstock J, et al. Comparison of cloud-top height retrievals from ground-based 35 GHz MMCR and GMS-5 satellite observations at ARM TWP Manus site[J].Atmospheric Research, 2004, 72: 169-186. [37] Wang Z, Sassen K. Cloud type and macrophysical property retrieval using multiple remote sensors[J]. Journal of Applied Meteorology,2001, 40: 1 665-1 682. [38] Wang Zhien, Kenneth S, Deborah V,et al. Level 2 Combined Radar and Lidar Cloud Scenario Classification Product Process Description and Interface Control document[R].CloudSat Project Jet Propulsion Laboratorg, Pasadena California, 2003. [39] Atlas D. The estimation of cloud parameters by radar[J].Journal of Agricultural Meteorology, 1954, 11: 309-317. [40] Sauvageot H, Omar J. Radar reflectivity of cumulus clouds[J].Journal of Atmospheric and Oceanic Technology, 1987, 4: 264-272. [41] Frisch A S, Fairall C W, Snider J B. Measurement of stratus cloud and drizzle parameters in ASTEX with a Ka-band Doppler radar and a microwave radiometer[J].Journal of the Atmospheric Sciences,1995, 52: 2 788-2 799. [42] Fox N I, Illingworth A J. The Retrieval of Stratocumulus Cloud Properties by Ground-Based Cloud Radar[J]. Journal of Applied Meteorology, 1997, 36(5): 485-492. [43] Matrosov S Y. Attenuation-based estimates of rainfall rates aloft with vertically pointing Ka-Band radars[J]. Journal of Atmospheric and Oceanic Technology,2004,  22(1): 43-54. [44] Yanagisawa Z, Ishihara M , Sawai T. Observations of sea fog by 8.6 millimeter radar. Tenki[J].Journal of the Meteorological Society of Japan, 1986,33: 603-612. [45] Frisch A S, Martner B E, Gibson J S. Measurement of the vertical flux of turbulent kinetic energy with a single Doppler radar[J]. Boundary-Layer Meteorology, 1989,49: 331-337. [46] White AB C , Fairal W L, Thomson D W . Radar observations of humidity variability in and above the marine atmospheric boundary layer[J].Journal of Atmospheric and Oceanic Technology,1991, 8: 639-658. [47] Gossard E E, Snider J B, Clothiaux E E, et al. The potential of 8-mm radars for remotely sensing cloud drop size distributions[J].Journal of Atmospheric and Oceanic Technology, 1997, 14: 76-87. [48] Hamazu K, Hashiguchi H, Wakayama T, et al. A 35-GHz scanning Doppler radar for fog observations[J]. Journal of Atmospheric and Oceanic Technology, 2003, 20(7): 972-986. [49] Intrieri J M, Stephens G L, Eberhard W L, et al. A method for determining cirrus cloud particle sizes using lidar and radar backscatter technique[J].Journal of Applied Meteorology,1993, 32: 1 074-1 082. [50] Matrosov S Y. Retrievals of vertical profiles of ice cloud microphysics from radar and IR measurements using tuned regressions between re ectivity and cloud parameters[J].Journal of Geophysical Research,1999, 104(14): 16 741-16 753. [51] Austin R T , Stephens G L. Retrieval of stratus cloud microphysical parameters using millimeter-wave radar and visible optical depth in preparation for CloudSat. 1. Algorithm for mulation[J].Journal of Geophysical Research,2001, 106(22): 28 233-28 242.



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