transport equation वाक्य
उदाहरण वाक्य
मोबाइल
- This problem originates from excessive diffusion of the transport equation.
- This flow is accounted for by the diffusion term in the vorticity transport equation.
- In this case the Navier Stokes equations reduce to the vorticity-transport equations.
- Here ? is a passive scalar and it obeys the scalar transport equation.
- Using this in the vorticity transport equation, Rayleigh's equation is obtained.
- It is therefore a transport equation; it can be solved using a characteristics method.
- Now the transport equation can be written as
- In 1973 Reed and Hill introduced a DG method to solve the hyperbolic neutron transport equation.
- In more concrete terms this allows parallel transport to be described explicitly using the transport equation.
- The transport equations for the mass fractions of the constituents are solved using this rate of reaction.
- The von Foerster equation is a transport equation; it can be solved using a characteristics method.
- The heat transport equation in CHAIN _ 2D considered transport due to conduction and advection with flowing water.
- Additional transport equations for pollutants and other aerosols are included in some primitive-equation mesoscale models as well.
- To avoid smearing of the free-surface, the transport equation has to be solved without excessive diffusion.
- The Boltzmann transport equation and related approaches are important tools in non-equilibrium statistical mechanics due to their extreme simplicity.
- Additional transport equations for pollutants and other aerosols are included in some primitive-equation high-resolution models as well.
- Continuity equations underlie more specific transport equations such as the convection diffusion equation, Boltzmann transport equation, and Navier Stokes equations.
- Continuity equations underlie more specific transport equations such as the convection diffusion equation, Boltzmann transport equation, and Navier Stokes equations.
- This result can be derived from the vorticity transport equation, obtained by taking the curl of the Navier-Stokes Equations.
- The solute transport equations considered advective-dispersive transport in the liquid phase, as well as diffusion in the gaseous phase.
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