Precipitation at the Ground: Radar Techniques
315
Collier CG (1989) Applications of Weather Radar Systems, A Guide to Uses of Radar Data
in Meteorology and Hydrology. Chichester, England, 294 pp
Conway BJ (1987) FRONTIERS: An operation system for nowcasting precipitation, Proc.
Symp. Mesoscale Analysis and Forecasting, Vanvouver, ESA SP-282, 233-239
Crozier CL, Joe P, Scott JW, Herscovitch HN, Nichols TR (1991) The King City
operational Doppler radar: development, all season applications and forecasting. AtmosphereOcean 29: 479-516
Cluckie ID, Owens MD (1989) Real-Time Rainfall Run-Off Models and Use of Weather
Radar Information. New York, John Wiley and Sons, Dennis, A.S., C.A. Schock and A.
Koscielski, 1970: Characteristics of hail storms of western South Dakota. J Appl Meteor 9:
127-135
Donaldson NR (1990) An example of attenuation by wet snow on a radar dome. AtmosphereOcean 29: 699-711
Donaldson RV Jr. (1970) Vortex signature recognition by a Doppler radar. J Appl Meteor
9: 661-670
Doneaud AA, Ionescu-Niscov S, Priegnitz DL, Smith PL (1984) The area-time integral
as an inicator for convective rain volumes. J Climate Appl Met 23: 555-561
Doneaud AA, Miller JR Jr., Johnson LR, Vonder Haar TH, Laybe P (1987) The
area-time integral technique to estimate convective rain volumes over areas applied to satellite
data - preliminary investigation. J Climate Appl Met 26: 156-169
Douglas RH (1964) Hail size distributions, 11th Radar Met. Conf., Boulder, CO, AMS,
146-149
Doviak RJ, Zrnic DS (1993) Doppler Radar and Weather Observations (2nd Edition). San
Diego, Calif., Academic Press, 562 pp
Eccles PJ, Atlas D (1973) A dual-wavelength radar hail detector. J Appl Meteorol12:
847-854
Eccles P J, Mueller EA (1973) X-band attenuation and liquid water content estimation by
a dual-wavelength radar. J Appl Meteorol10: 1252-1259
English M, Kochtubajda B, Barlow F, Holt A, McGuinness R (1991) Radar measurement of rainfall by differential propagation phase: a pilot experiment. Atmos Ocean 29:
357-380
Federer N, Waldvogel A (1975) Hail and raindrop size distributions from a Swiss multicell
storm. J Appl Meteorol14: 91-97
Foote GB, duToit PS (1969) Terminal velocity of raindrops aloft. J Appl Meteorol8: 249-253
Gossard EE, Strauch RG (1983) Radar Observations of Clear Air and Clouds. Amsterdam,
Elsevier Sci Publ, 280 pp
Gunn KLS, Kinzer GD (1949) The terminal velocity of fall for water droplets in stagnant
air. J Met 6: 243-248
Gunn KLS, Marshall JS (1958) The distribution of size of aggregate snowflakes. J Meteorol
15: 452-466
Hardaker P J, Holt AR, Collier CG (1995) A melting-layer model and its use in correcting
for the bright band in sing-polarization radar echoes. Quart Joum of the Royal Met Soc 495-525
Hitchfeld W, Stauder M (1965) The temperature of hailstones, Alberta Hail Studies, 1964,
Sci. Rep. MW-42, Stormy Weather Group, McGill Univ., Montreal, Canada
315
Collier CG (1989) Applications of Weather Radar Systems, A Guide to Uses of Radar Data
in Meteorology and Hydrology. Chichester, England, 294 pp
Conway BJ (1987) FRONTIERS: An operation system for nowcasting precipitation, Proc.
Symp. Mesoscale Analysis and Forecasting, Vanvouver, ESA SP-282, 233-239
Crozier CL, Joe P, Scott JW, Herscovitch HN, Nichols TR (1991) The King City
operational Doppler radar: development, all season applications and forecasting. AtmosphereOcean 29: 479-516
Cluckie ID, Owens MD (1989) Real-Time Rainfall Run-Off Models and Use of Weather
Radar Information. New York, John Wiley and Sons, Dennis, A.S., C.A. Schock and A.
Koscielski, 1970: Characteristics of hail storms of western South Dakota. J Appl Meteor 9:
127-135
Donaldson NR (1990) An example of attenuation by wet snow on a radar dome. AtmosphereOcean 29: 699-711
Donaldson RV Jr. (1970) Vortex signature recognition by a Doppler radar. J Appl Meteor
9: 661-670
Doneaud AA, Ionescu-Niscov S, Priegnitz DL, Smith PL (1984) The area-time integral
as an inicator for convective rain volumes. J Climate Appl Met 23: 555-561
Doneaud AA, Miller JR Jr., Johnson LR, Vonder Haar TH, Laybe P (1987) The
area-time integral technique to estimate convective rain volumes over areas applied to satellite
data - preliminary investigation. J Climate Appl Met 26: 156-169
Douglas RH (1964) Hail size distributions, 11th Radar Met. Conf., Boulder, CO, AMS,
146-149
Doviak RJ, Zrnic DS (1993) Doppler Radar and Weather Observations (2nd Edition). San
Diego, Calif., Academic Press, 562 pp
Eccles PJ, Atlas D (1973) A dual-wavelength radar hail detector. J Appl Meteorol12:
847-854
Eccles P J, Mueller EA (1973) X-band attenuation and liquid water content estimation by
a dual-wavelength radar. J Appl Meteorol10: 1252-1259
English M, Kochtubajda B, Barlow F, Holt A, McGuinness R (1991) Radar measurement of rainfall by differential propagation phase: a pilot experiment. Atmos Ocean 29:
357-380
Federer N, Waldvogel A (1975) Hail and raindrop size distributions from a Swiss multicell
storm. J Appl Meteorol14: 91-97
Foote GB, duToit PS (1969) Terminal velocity of raindrops aloft. J Appl Meteorol8: 249-253
Gossard EE, Strauch RG (1983) Radar Observations of Clear Air and Clouds. Amsterdam,
Elsevier Sci Publ, 280 pp
Gunn KLS, Kinzer GD (1949) The terminal velocity of fall for water droplets in stagnant
air. J Met 6: 243-248
Gunn KLS, Marshall JS (1958) The distribution of size of aggregate snowflakes. J Meteorol
15: 452-466
Hardaker P J, Holt AR, Collier CG (1995) A melting-layer model and its use in correcting
for the bright band in sing-polarization radar echoes. Quart Joum of the Royal Met Soc 495-525
Hitchfeld W, Stauder M (1965) The temperature of hailstones, Alberta Hail Studies, 1964,
Sci. Rep. MW-42, Stormy Weather Group, McGill Univ., Montreal, Canada
