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期刊论文 [3]
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2020 [3]
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Two-phase flow of CO2-brine in a heterogeneous sandstone: Characterization of the rock and comparison of the lattice-Boltzmann, pore-network, and direct numerical simulation methods
期刊论文
, 2020, 卷号: 135
作者:
Kohanpur A.H.
;
Rahromostaqim M.
;
Valocchi A.J.
;
Sahimi M.
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浏览/下载:37/0
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提交时间:2020/07/28
Carbon dioxide
Computational efficiency
Direct numerical simulation
Enhanced recovery
Finite volume method
Injection (oil wells)
Internet protocols
Morphology
Numerical methods
Numerical models
Petroleum reservoir engineering
Porous materials
Sandstone
Computational resources
Enhanced oil recovery
Flow charac-teristics
Hydrocarbon reservoir
Quantities of interests
Relative permeability
Sequestration process
Three dimensional images
Two phase flow
brine
carbon sequestration
comparative study
fluid injection
lattice dynamics
numerical method
porosity
sandstone
source rock
two phase flow
Coupling terrestrial laser scanning with 3D fuel biomass sampling for advancing wildland fuels characterization
期刊论文
, 2020, 卷号: 462
作者:
Rowell E.
;
Loudermilk E.L.
;
Hawley C.
;
Pokswinski S.
;
Seielstad C.
;
Queen L.L.
;
O'Brien J.J.
;
Hudak A.T.
;
Goodrick S.
;
Hiers J.K.
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浏览/下载:25/0
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提交时间:2020/07/28
Computational fluid dynamics
Ecosystems
Fire protection
Fires
Fuels
Laser applications
Remote sensing
Seebeck effect
Steel beams and girders
Three dimensional computer graphics
Vegetation
Field sampling
High resolution
Sampling method
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Spatial patterns
Terrestrial laser scanning
Three dimensions
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computational fluid dynamics
fire behavior
laser method
porosity
remote sensing
sampling
three-dimensional modeling
wilderness area
wildfire
Ecosystems
Fire Protection
Fires
Fuels
Plants
Remote Sensing
Poaceae
On the aerodynamic fog collection efficiency of fog water collectors via three-dimensional numerical simulations
期刊论文
, 2020, 卷号: 245
作者:
Carvajal D.
;
Silva-Llanca L.
;
Larraguibel D.
;
González B.
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浏览/下载:27/0
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提交时间:2020/07/28
Aerodynamics
Computational fluid dynamics
Drops
Efficiency
Fog
Mesh generation
Porous materials
Wind
Arid and semi-arid areas
Collecting systems
Collection efficiency
Geometric characteristics
Inertial pressure
Maximum wind speed
Three dimensional computational fluid dynamics
Three-dimensional numerical simulations
Collector efficiency