Geoscience Reference
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Chacón, R. E. and Fernandez, W. (1985) Temporal
and spatial rainfall variability in the moun-
tainous region of the Reventazón river
basin,Costa Rica. Int. J. Climatol. 5, 176-88.
Chinn, T. J. (1979) How wet is the wettest of the wet
West Coast? New Zealand Alpine Journal 32,
85-7.
Dudhia, J. (1996) Back to basics: thunderstorms. Part
1. Weather51(11), 371-6.
Dudhia, J. (1997) Back to basics: thunderstorms. Part
2, Storm types and associated weather. Weather
52(1), 2-7.
Durbin, W. G. (1961) An introduction to cloud
physics. Weather16, 71-82 and 113-25.
East, T. W. R. and Marshall, J. S. (1954) Turbulence
in clouds as a factor in precipitation. Quart. J.
Roy. Met. Soc.80, 26-47.
Eyre, L. A. (1992) How severe can a 'severe
thunderstorm' be? Weather47, 374-83.
Griffiths, D. J., Colquhoun, J. R., Batt, K. L. and
Casinader, T. R. (1993) Severe thunderstorms in
New South Wales: climatology and means of
assessing the impact of climate change. Climatic
Change25, 369-88.
Henderson, R. (1993) Extreme storm rainfalls in the
Southern Alps, New Zealand, in Extreme
Hydrological Events: Precipitation, Floods and
Droughts (Proceedings of the Yokohama
Symposium), IAHS Pub. No. 213, 113-20.
Hirschboeck, K. K. (1987) Catastrophic flooding and
atmospheric circulation anomalies, in Mayer, L.
and Nash, D. (eds) Catastrophic Flooding, Allen
& Unwin, Boston, MA, 23-56.
Hopkins, M. M., Jr. (1967) An approach to the
classification of meteorological satellite data.
J. Appl. Met.6, 164-78.
Houze, R. A., Jr. and Hobbs, P. V. (1982) Organiza-
tion and structure of precipitating cloud
systems. Adv. Geophys.24, 225-315.
Jonas, P. R. (1994a) Back to basics: why do clouds
form? Weather49(5), 176-80.
Jonas, P. R. (1994b) Back to basics: why does it rain?
Weather49(7), 258-60.
Kyle, H. L. et al.(1993) The Nimbus Earth radiation
budget (ERB) experiment: 1975 to 1992. Bull.
Amer. Met Soc. 74, 815-30.
Latham, J. (1966) Some electrical processes in the
atmosphere. Weather21, 120-7.
Latham, J. et al. (2007) Field identification of a
unique globally dominant mechanism of
thunderstorm electrification. Quart. J. Roy. Met.
Soc.133, 1453-7
London, J., Warren, S. G. and Hahn, C. J. (1989) The
global distribution of observed cloudiness - a
contribution to the ISCPP. Adv. Space Res. 9(7),
161-5.
Mason, B. J. (1962) Charge generation in thunder-
storms. Endeavour 21, 156-63.
Orville, R. E. et al. (2002) The North American
lightning detection network (NALDN) - First
results: 1998-2000. Mon. Wea. Rev. 130(8),
2098-109.
Pearce, F. (1994) Not warming, but cooling. New
Scientist143, 37-41.
Pike, W. S. (1993) The heavy rainfalls of 22-23
September 1992. Met. Mag. 122, 201-9.
Qiu, J. and Cressey, D. (2008) Taming the sky.
Nature 453, 970-4.
Rosenfeld, D. et al. (2008) Flood or drought: How do
aerosols affect precipitation? Science 321(5894):
1309-13.
Sawyer, J. S. (1956) The physical and dynamical
problems of orographic rain. Weather 11,
375-81.
Schermerhorn, V. P. (1967) Relations between
topography and annual precipitation in western
Oregon and Washington. Water Resources
Research 3, 707-11.
Schultz, D. M. et al. (2006) The mysteries of
mamatus clouds: observations and formation
mechanisms. J. Atmos. Sci., 63, 2409-35.
Smith, R. B. (1989) Mechanisms of orographic
precipitation. Met. Mag.118, 85-8.
Stolzenburg, M., Rust, W. D. and Marshal, T. C.
(1998) Electrical structure in thunderstorm
convective regions. 3. Synthesis. J. Geophys.
Res.103(D12), 14097-108.
Sumner, G. (1996) Precipitation weather. J.
Geography81(4), 327-45
Weston, K. J. (1977) Cellular cloud patterns.
Weather32, 446-50.
Wratt, D. S. et al. (1996) The New Zealand Southern
Alps Experiment. Bull. Amer. Met. Soc. 77(4),
683-92.
 
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