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在“
自然资源管理
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30
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1.
Averaging
theory
for description of environmental problems: What have we learned?
作者:
William G. Graya
;
GrayWG@unc.edu
;
Cass T. Millera
;
casey_miller@unc.edu
;
Bernhard A. Schreflerb
;
bas@dic.unipd.it
关键词:
Averaging
theory
;
Porous media
;
Environmental modeling
;
TCAT
刊名:Advances in Water Resources
年:2013
2.
A generalization of
averaging
theorems for porous medium analysis
作者:
William G. Gray
;
Cass T. Miller
关键词:
Averaging
theory
;
Averaging
theorems
;
Porous media
刊名:Advances in Water Resources
年:December, 2013
3.
Optimal guidance law design for guided munitions based on segmental linear functions
作者:
Lei Doua
;
doulei@njust.edu.cn" class="auth_mail" title="E-mail the corresponding author
;
Jiao Doub
关键词:
Optimal control
;
Guidance law
;
Guided munitions
;
Landing angle
;
Segmental linear functions
;
Multi-constraints
刊名:Aerospace Science and Technology
年:2016
4.
Homogenization via formal multiscale asymptotics and volume
averaging
: How do the two techniques compare?
作者:
Yohan Davit
;
Christopher G. Bell
;
Helen M. Byrne
;
Lloyd A.C. Chapman
;
Laura S. Kimpton
;
Georgina E. Lang
;
Katherine H.L. Leonard
;
James M. Oliver
;
Natalie C. Pearson
;
Rebecca J. Shipley
;
Sarah L. Waters
;
Jonathan P. Whiteley
;
Brian D. Wood
;
Michel Quintard
关键词:
Homogenization
;
Upscaling
;
Volume
averaging
;
Multiscale asymptotics
;
Porous media
刊名:Advances in Water Resources
年:December, 2013
5.
Thermodynamically constrained
averaging
theory
approach for modeling flow and transport phenomena in porous medium systems: 7. Single-phase megascale flow models
作者:
William G. Gray
;
Cass T. Miller
关键词:
Averaging
theory
;
TCAT
;
System scale
;
Model formulation
刊名:Advances in Water Resources
年:2009
6.
Thermodynamically constrained
averaging
theory
approach for modeling flow and transport phenomena in porous medium systems: 5. Single-fluid-phase transport
作者:
William G. Gray
;
Cass T. Miller
关键词:
Averaging
theory
;
TCAT
;
Averaged thermodynamics
;
Model formulation
;
Species transport
;
Porous media
刊名:Advances in Water Resources
年:2009
7.
Thermodynamically constrained
averaging
theory
approach for modeling flow and transport phenomena in porous medium systems: 9. Transition region models
作者:
A.S. Jacksona
;
asalle1@email.unc.edu
;
I. Rybakd
;
rybak@ians.uni-stuttgart.de
;
R. Helmigc
;
rainer.helmig@iws.uni-stuttgart.de
;
W.G. Grayb
;
GrayWG@unc.edu
;
C.T. Millerb
;
casey_miller@unc.edu
关键词:
TCAT
;
Averaged thermodynamics
;
Model formulation
;
Species transport
;
Multiphase system
;
Multiscale systems
刊名:Advances in Water Resources
年:2012
8.
Thermodynamically constrained
averaging
theory
approach for modeling flow and transport phenomena in porous medium systems: 8. Interface and common curve dynamics
作者:
William G. Gray
;
Cass T. Miller
关键词:
TCAT
;
Evolution equations
;
Interfacial area
;
Interfacial dynamics
;
Dynamic capillary pressure
刊名:Advances in Water Resources
年:2010
9.
Comparison of
theory
and experiment for solute transport in weakly heterogeneous bimodal porous media
作者:
Fabrice Golfiera
;
fabrice.golfier@ensg.inpl-nancy.fr"" rel=""nofollow
;
Michel Quintardb
;
c
;
michel.quintard@imft.fr"" rel=""nofollow
;
Brian D. Woodd
;
brian.wood@oregonstate.edu"" rel=""nofollow
关键词:
Solute transport
;
Mass transfer
;
Upscaling
;
Volume
averaging
;
Porous media
;
Heterogeneous
刊名:Advances in Water Resources
年:2011
10.
Thermodynamically constrained
averaging
theory
approach for modeling flow and transport phenomena in porous medium systems: 3. Single-fluid-phase flow
作者:
William G. Gray and Cass T. Miller
关键词:
Porous medium models
;
Averaging
theory
;
TCAT
;
Single-phase flow
刊名:Advances in Water Resources
年:2006
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