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在“
自然资源管理
”中,
命中:
94
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1.
Simplified modeling of catchment-scale evapotranspiration via boundary condition switching
作者:
Matteo Camporesea
;
b
;
c
;
matteo.camporese@unipd.it" class="auth_mail
;
Edoardo Dalyb
;
c
;
edoardo.daly@monash.edu" class="auth_mail
;
P. Evan Dreseld
;
evan.dresel@depi.vic.gov.au" class="auth_mail
;
John A. Webbc
;
e
;
John.Webb@latrobe.edu.au" class="auth_mail
关键词:
Surface&ndash
;
subsurface coupled modeling
;
Boundary condition switching
;
Evapotranspiration
;
Catchment-scale
刊名:Advances in Water Resources
年:41821
2.
Mesoscopic aspects of
root
water
uptake
modeling - Hydraulic resistances and
root
geometry interpretations in plant transpiration analysis
作者:
Tomas Vogel
;
vogel@fsv.cvut.cz" class="auth_mail" title="E-mail the corresponding author
;
Jana Votrubova
;
Jaromir Dusek
;
Michal Dohnal
关键词:
Root
water
uptake
;
Soil water flow model
;
Hydraulic resistance
;
Critical
root
xylem water potential
;
Sap flow
;
Transpiration
刊名:Advances in Water Resources
年:2016
3.
Nitrogen
Uptake
in an Alpine Kobresia Pasture on the Tibetan Plateau: Localization by 15N Labeling and Implications for a Vulnerable Ecosystem
作者:
Per-Marten Schleuss
;
Felix Heitkamp
;
Yue Sun
;
Georg Miehe
;
Xingliang Xu…
关键词:
Kobresia pygmaea
;
root
activity
;
root
biomass
;
plant strategy
;
above
;
belowground trade
;
offs
;
15N partitioning
;
pasture degradation
刊名:Ecosystems
出版者:Springer New York
年:2015
4.
Direct comparison of MRI and X-ray CT technologies for 3D imaging of
root
systems in soil: potential and challenges for
root
trait quantification
作者:
Ralf Metzner
;
Anja Eggert
;
Dagmar van Dusschoten
;
Daniel Pflugfelder…
关键词:X ;
ray Computed Tomography (CT)
;
Magnetic Resonance Imaging (MRI)
;
Root
system architecture
;
Common bean (Phaseolus vulgaris L.) 3D imaging
;
Root
s in soil
;
Non
;
destructive
刊名:Plant Methods
出版者:BioMed Central
年:2015
5.
Soil water
uptake
and
root
distribution of different perennial and annual bioenergy crops
作者:
Fabien Ferchaud
;
Guillaume Vitte
;
Frédéric Bornet
;
Lo?c Strullu…
关键词:
Bioenergy
;
Energy crops
;
Soil water
;
Root
system
;
Miscanthus
;
Switchgrass
刊名:Plant and Soil
出版者:Springer Netherlands
年:2015
6.
Spatial
root
distribution of plants growing in vertical media for use in living walls
作者:
Lars J?rgensen (1) (2) Dorte Bodin Dresb?ll (1) Kristian Thorup-Kristensen (1)
关键词:
Root
frequency
;
15N
uptake
;
Stable isotope
;
Coir
;
Rockwool
;
Root
architecture
刊名:Plant and Soil
年:2014
7.
Root
controls on water redistribution and carbon
uptake
in the soil-plant system under current and future climate
作者:
V. Volpe
;
M. Marani
;
J.D. Albertson
;
G. Katul
关键词:
Hydraulic lift
;
Root
water
uptake
;
Soil moisture
;
Stomatal conductance
;
Transpiration
刊名:Advances in Water Resources
年:2013
8.
Grassland species
root
response to drought: consequences for soil carbon and nitrogen availability
作者:
Franciska T. de Vries
;
Caley Brown
;
Carly J. Stevens
关键词:
Aboveground
;
belowground linkages
;
Plant functional traits
;
Plasticity
;
Soil microbial properties
;
Soil processes
;
Climate change
刊名:Plant and Soil
出版者:Springer International Publishing
年:2016
9.
Nitrogen acquisition by
root
s: physiological and developmental mechanisms ensuring plant adaptation to a fluctuating resource
作者:
Philippe Nacry
;
Eléonore Bouguyon
;
Alain Gojon
关键词:
Nitrate
;
Ammonium
;
Urea
;
Nutrient sensing and signalling
;
Root
uptake
;
Root
development
刊名:Plant and Soil
年:2013
10.
Tree
root
systems competing for soil moisture in a 3D soil-plant model
作者:
Gabriele Manolia
;
b
;
manoli@dmsa.unipd.it" class="auth_mail
;
Sara Bonettib
;
Jean-Christophe Domecc
;
d
;
Mario Puttia
;
Gabriel Katulb
;
Marco Maranib
;
e
关键词:
Ecohydrology
;
Numerical modeling
;
Optimal leaf conductance
;
Photosynthesis
;
Root
water
uptake
;
Trees competition
刊名:Advances in Water Resources
年:April, 2014
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