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Comparative evaluation of BATS2, BATS, and SiB2 with Amazon data
Omer L. Sen
, W. James Shuttleworth
*
, Zong Liang Yang
*
Corresponding author for this work
University of Arizona
Research output
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Contribution to journal
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Article
›
peer-review
16
Citations (Scopus)
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Keyphrases
Amazon
100%
Biosphere
100%
Transfer Scheme
100%
SiB2
100%
Realistic Simulation
40%
Default Values
40%
Rooting Depth
40%
Atmospheric Humidity
40%
Humidity Deficit
40%
Biosphere Model
40%
Land Surface Schemes
40%
Anglo
40%
Amazonian Climate
40%
Humidity
20%
Surface Energy Balance
20%
Long-term Simulation
20%
Model Representation
20%
Respiration
20%
CO2 Exchange
20%
Carbon Balance
20%
Soil Moisture Content
20%
Hourly Variation
20%
Physiological Processes
20%
Transpiration
20%
Carbon Dioxide CO2
20%
CO2 Uptake
20%
Root Distribution
20%
Carbon Respiration
20%
Atmospheric Vapor Pressure Deficit
20%
Stomatal Function
20%
Stomatal Behavior
20%
Carbon Allocation
20%
Stomatal Response
20%
Deep Rooting
20%
Stomata
20%
Carbon Stores
20%
Best Time
20%
Plant Physiological Responses
20%
Engineering
Land Surface
100%
Field Data
100%
Model Parameter
100%
Default Value
100%
Good Agreement
50%
Significant Change
50%
Relative Humidity
50%
Good Time
50%
Interfacial Energy
50%
Earth and Planetary Sciences
Carbon Dioxide
100%
Atmospheric Humidity
66%
Rooting
66%
Land Surface
66%
Atmospherics
33%
Time Series
33%
Soil Moisture
33%
Energy Balance
33%
Carbon Balance
33%
Biomass Allocation
33%
Relative Humidity
33%
Vapor Pressure
33%
Interfacial Energy
33%