Chemistry |
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Thermodynamics coupling |
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Electrophoretic Transport |
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Stationary |
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Time Dependent |
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Time Dependent with Initialization |
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Moisture Flow |
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Laminar Flow |
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Stationary |
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Time dependent |
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Porous Media Flow1 |
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Stationary1 |
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Time Dependent1 |
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Turbulent Flow, Algebraic yPlus |
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Stationary |
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Time dependent |
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Turbulent Flow, k-epsilon |
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Stationary |
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Time dependent |
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Turbulent Flow, k-omega2 |
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Stationary2 |
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Time dependent2 |
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Turbulent Flow, L-VEL |
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Stationary |
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Time dependent |
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Turbulent Flow, Low-Re k-epsilon |
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Stationary |
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Time dependent |
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Turbulent Flow, Spalart-Allmaras2 |
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Stationary2 |
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Time dependent2 |
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Turbulent Flow, SST2 |
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Stationary2 |
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Time dependent2 |
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Moisture Transport in Air |
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Stationary |
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Time Dependent |
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Moisture Transport in Porous Media |
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Stationary |
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Time Dependent |
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Nernst-Planck Equations |
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Stationary |
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Time Dependent |
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Nernst-Planck-Poisson Equations |
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Stationary |
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Time Dependent |
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Reacting Pipe Flow |
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Add-on for Multiple-Species User Interface |
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Stationary |
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Time Dependent |
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Reaction Engineering |
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Stationary Plug Flow |
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Thermodynamics coupling |
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Time Dependent |
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Surface Reactions |
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Stationary |
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Transient |
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Transport of Concentrated Species |
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Stationary |
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Time Dependent |
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Transport of Concentrated Species in Porous Media |
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Stationary |
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Time Dependent |
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Transport of Diluted Species |
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Add-on for Multiple-Species User Interface |
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Stationary |
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Time Dependent |
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Transport of Diluted Species in Fractures |
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Stationary |
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Time Dependent |
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Transport of Diluted Species in Pipes |
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Add-on for Multiple-Species User Interface |
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Stationary |
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Time Dependent |
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Transport of Diluted Species in Porous Media |
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Stationary |
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Time Dependent |
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Hygroscopic Porous Medium |
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Stationary |
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Time Dependent |
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Moisture Transport in Air |
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Stationary |
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Time Dependent |
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Moisture Transport in Building Material |
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Stationary |
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Time Dependent |
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Laminar Flow3 |
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Stationary |
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Time Dependent |
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Turbulent Flow, k-epsilon4 |
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Stationary |
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Time Dependent |
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Turbulent Flow, k-omega4 |
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Stationary |
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Time Dependent |
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Turbulent Flow, Low Re k-epsilon4 |
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Stationary |
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Stationary with Initialization |
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Time Dependent |
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Time Dependent with Initialization |
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Turbulent Flow, SST4 |
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Stationary with Initialization |
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Time Dependent with Initialization |
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Laminar Flow |
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Stationary |
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Time dependent |
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Laminar Flow, Diluted Species |
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Stationary |
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Time Dependent |
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Turbulent Flow, k-epsilon |
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Stationary |
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Time Dependent |
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Turbulent Flow, k-epsilon, Diluted Species |
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Stationary |
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Time Dependent |
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Turbulent Flow, k-omega |
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Stationary |
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Stationary with Initialization |
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Time Dependent |
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Time Dependent with Initialization |
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Turbulent Flow, k-omega, Diluted Species |
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Stationary |
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Stationary with Initialization |
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Time Dependent |
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Time Dependent with Initialization |
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Turbulent Flow, Low Re k-epsilon |
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Stationary with Initialization |
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Time Dependent with Initialization |
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Turbulent Flow, Low Re k-epsilon, Diluted Species |
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Stationary with Initialization |
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Time Dependent with Initialization |
Turbulent Flow, SST |
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Stationary with Initialization |
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Time Dependent with Initialization |
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Turbulent Flow, SST, Diluted Species |
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Stationary |
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Time Dependent |
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Reacting Flow in Packed Beds, Concentrated Species |
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Stationary |
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Time Dependent |
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Reacting Flow in Packed Beds, Diluted Species |
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Stationary |
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Time Dependent |
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Reacting Flow in Porous Catalysts, Concentrated Species |
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Stationary |
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Time Dependent |
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Reacting Flow in Porous Catalysts, Diluted Species |
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Stationary |
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Time Dependent |
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Reacting Flow in Porous Media, Concentrated Species |
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Stationary |
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Time Dependent |
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Reacting Flow in Porous Media, Diluted Species |
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Stationary |
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Time Dependent |
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Laminar Flow |
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Frozen Rotor2 |
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Time Dependent2 |
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Turbulent Flow, k-epsilon |
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Frozen Rotor2 |
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Time Dependent2 |
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Turbulent Flow, k-omega |
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Frozen Rotor2 |
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Frozen Rotor with Initialization2 |
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Time Dependent2 |
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Time Dependent with Initialization2 |
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Turbulent Flow, Low-Re k-epsilon |
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Frozen Rotor with Initialization2 |
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Time Dependent with Initialization2 |
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Turbulent Flow, SST |
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Frozen Rotor with Initialization2 |
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Time Dependent with Initialization2 |
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Axial Symmetry |
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Concentration |
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Continuity |
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Current Density |
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Current Discontinuity |
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Electric Insulation |
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Electric Potential |
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Electrode Surface Coupling |
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Flux |
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Flux Discontinuity |
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Mass Outflow |
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No Flux |
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Open Boundary |
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Out-of-Plane Flux |
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Outflow |
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Partition Condition |
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Periodic Condition |
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Porous Electrode Coupling |
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Reacting Boundary |
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|
Surface Equilibrium Reaction |
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Surface Reactions |
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|
Symmetry |
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|
Thin Diffusion Barrier |
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|
Thin Impermeable Barrier |
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Volatilization |
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Fracture |
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Adsorption |
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Inflow |
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|
Danckwerts Inflow Condition |
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|
Inflow with Mixture Specification |
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|
Densities |
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Mass Flow rates |
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Mass Fractions |
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Molar Concentrations |
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Mole Fractions |
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Number Densities |
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Inflow |
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Insulation |
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Moist Surface |
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Moisture Content |
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Open boundary |
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|
Outflow |
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|
|
Periodic Condition |
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|
Symmetry |
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|
Thin Moisture Barrier |
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|
Wet Surface |
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|
Moisture Flux |
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|
Convective Moisture Flux - concentrations difference - forced convection correlations |
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|
Convective Moisture Flux - concentrations difference - from heat and moisture transport analogy |
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|
Convective Moisture Flux - concentrations difference - natural convection correlations |
|
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|
Convective Moisture Flux - pressures difference - user defined |
|
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|
Parameter estimation in Reaction Engineering2 |
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|
CHEMKIN file import of thermo- transport- and kinetic data |
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|
CHEMKIN file import |
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|
Surface CHEMKIN file import |
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|
Flux |
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|
Line Mass Source |
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|
Point Mass Source |
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|
Thermodynamics |
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Predefined System |
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|
Species Properties Database |
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|
User-Defined Species |
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|
External Thermodynamic System |
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|
Generate Chemistry |
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|
Generate Material |
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|
Thermodynamic System |
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|
Generate Chemistry |
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|
Generate Material |
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|
Steam and Water Properties (IAPWS) |
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|
1D, 2D, Axisymmetric, and 3D Formulations |
|
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|
Convection and Diffusion |
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|
Electrochemical Reactions |
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|
Equilibrium Reaction |
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|
Free Flow |
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|
Generate Space-Dependent Model |
|
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|
Infinite Domain Modeling with Infinite Elements |
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|
Initial Values |
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|
Isotropic Diffusion |
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|
Mass Based Concentrations |
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|
Migration in Electric Field |
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|
Multiple-Species User Interface |
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Reactions |
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Species Source |
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Wall Mass Transfer |
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Effective Diffusivity Models |
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Bruggeman |
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Millington and Quirk |
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Tortuosity |
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Packed Bed, Transport of Concentrated Species |
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Fluid |
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Pellets |
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Pellet-Fluid Interface |
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Reactions |
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Transport Properties |
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Packed Bed, Transport of Diluted Species |
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Fluid |
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Pellets |
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Diffusion |
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Pellet-Fluid Interface |
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Reactions |
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Porous Catalyst, Transport of Concentrated Species |
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Adsorption |
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Fluid |
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Porous Matrix |
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Surface Reaction |
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Porous Catalyst, Transport of Diluted Species |
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Adsorption |
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Fluid |
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Porous Matrix |
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Surface Reaction |
Porous Medium, Transport of Concentrated Species |
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Fluid |
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Porous Matrix |
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Porous Medium, Transport of Diluted Species |
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Adsorption |
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Dispersion |
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Fluid |
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Porous Matrix |
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Reactions, Chemical Reaction Engineering |
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Automatic Kinetics Generation |
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Balance Reaction |
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Species, Chemical Reaction Engineering |
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Automatic definition of molar mass from the chemical formula |
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Unsaturated Porous Medium |
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Adsorption |
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Dispersion |
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Gas |
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Liquid |
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Porous Matrix |
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Fick's Law |
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Knudsen Diffusion |
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Maxwell-Stefan |
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Mixture-Averaged |
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Building Material |
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Moisture Source |
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Moist Air |
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Turbulent Mixing |
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Hygroscopic Swelling |
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Solid Mechanics |
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