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|
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evapotranspiration B-climate-nature
|
is O
|
the O
|
transfer O
|
of O
|
energy O
|
between O
|
the O
|
Earth B-climate-nature
|
's I-climate-nature
|
surface I-climate-nature
|
and O
|
the O
|
atmosphere B-climate-nature
|
and O
|
it O
|
is O
|
the O
|
most O
|
productive O
|
mechanism O
|
of O
|
communication O
|
between O
|
the O
|
hydrosphere B-climate-nature
|
, O
|
lithosphere B-climate-nature
|
and O
|
biosphere B-climate-organisms
|
. O
|
This O
|
study O
|
focuses O
|
on O
|
predicting O
|
potential B-climate-properties
|
evapotranspiration I-climate-properties
|
in O
|
Golpayegan O
|
basin O
|
as O
|
a O
|
response O
|
to O
|
climate O
|
change O
|
. O
|
For O
|
this O
|
purpose O
|
, O
|
six O
|
algorithms O
|
including O
|
Hargreaves B-climate-models
|
- I-climate-models
|
Samani I-climate-models
|
, O
|
Thornthwaite B-climate-models
|
, O
|
Romanenko B-climate-models
|
, O
|
Oudin B-climate-models
|
, O
|
Kharrufa B-climate-models
|
and O
|
Blaney B-climate-models
|
- I-climate-models
|
Criddle I-climate-models
|
and O
|
also O
|
, O
|
Penman- B-climate-models
|
Monteith- I-climate-models
|
FAO I-climate-models
|
as O
|
a O
|
standard O
|
algorithm O
|
, O
|
were O
|
used O
|
for O
|
estimating O
|
the O
|
potential B-climate-properties
|
evapotranspiration I-climate-properties
|
. O
|
The O
|
results O
|
showed O
|
that O
|
the O
|
Hargreaves B-climate-models
|
- I-climate-models
|
Samani I-climate-models
|
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