momentum equation वाक्य
उदाहरण वाक्य
मोबाइल
- Equation ( ) is the momentum equation, giving the balance between forces and momentum change rates.
- In these flows, mass and momentum equations can be combined to yield a kinematic wave equation.
- These equations consist of the continuity and momentum equations for conduits and a volume continuity equation at nodes.
- Models which use the entire vertical momentum equation are known as "'nonhydrostatic " '.
- Shown below are the above momentum equations with the most common application of " F ":
- In addition to the filtered mass and momentum equations, filtering the kinetic energy equation can provide additional insight.
- The force exerted by the structure on the fluid is then interpolated as a source term in the momentum equation using
- In that case, and for a constant density, the momentum equations of the Euler equations can be integrated to:
- Here we consider a three-dimensional Oldroyd-B model coupled with the momentum equation and the total stress tensor.
- The momentum equation can be applied to determine the force exerted by water on a sluice gate ( Figure 7 ).
- In this condition, by taking the divergence of all terms in the momentum equation, one obtains the pressure poisson equation.
- As an example for the spatial derivatives, derivative in the west-face diffusion term in the x-momentum equation becomes
- One arrives to the "'Crocco Vazsonyi form "'( Crocco, 1937 ) of the Euler momentum equation:
- The perturbed pressures are evaluated in terms of streamfunctions, using the horizontal momentum equation of the linearised Euler equations for the perturbations,
- The momentum equations for the far field flow dictate that the thrust and torque will induce a secondary flow in the approaching wind.
- The first equation is the Euler momentum equation with uniform density ( for this equation it could also not be constant in time ).
- Letting g = m w _ i, the momentum of the particle, the integrated Boltzmann equation becomes the conservation of momentum equation:
- The Kutta condition allows an aerodynamicist to incorporate a significant effect of viscosity while neglecting viscous effects in the underlying conservation of momentum equation.
- These equations are however hard to solve due to quasilinearity in the momentum equations and interdependence of the pressure term in all three equations.
- By choosing \ eta as the y-scale, the leading order momentum equation for this " inner boundary layer " is given by:
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