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Why do precipitation intensities tend to follow gamma distributions?
Cristian Martinez-Villalobos
, J. David Neelin
Faculty of Engineering and Science
Research output
:
Contribution to journal
›
Article
›
peer-review
119
Scopus citations
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Keyphrases
Daily Precipitation
100%
Gamma Distribution
100%
Precipitation Intensity
100%
Precipitation Distribution
83%
Power Law
50%
Climate Conditions
16%
Rain
16%
Global Warming
16%
Physical Parameters
16%
Probability Distribution
16%
Precipitation Accumulation
16%
Extreme Precipitation
16%
Current Climate
16%
Moisture Availability
16%
Averaging Period
16%
Daily Precipitation Intensity
16%
Sharp Power
16%
Power Law Exponent
16%
Precipitation Occurrence
16%
Long History
16%
Engineering
Key Physical Parameter
100%
Global Warming
100%
Gamma Distribution
100%
Averaging Period
100%
Power Law Exponent
100%
INIS
distribution
100%
precipitation
100%
accumulation
27%
probability
27%
power
27%
range
27%
climates
18%
size
9%
applications
9%
values
9%
availability
9%
decay
9%
shape
9%
rain
9%
moisture
9%
global warming
9%
power distribution
9%
storms
9%
Earth and Planetary Sciences
Probability Theory
100%
Power Law
100%
Precipitation Intensity
100%
Global Warming
33%
Climate Condition
33%
Power Law Distribution
33%
Physics
Probability Theory
100%
Global Warming
33%
Physical Parameter
33%