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This section includes 10 Mcqs, each offering curated multiple-choice questions to sharpen your Computational Fluid Dynamics knowledge and support exam preparation. Choose a topic below to get started.
1. |
Diffusion terms are not included in ____ of the Navier-Stokes equations. |
A. | continuity equation |
B. | y-momentum equation |
C. | z-momentum equation |
D. | energy equation |
Answer» D. energy equation | |
2. |
The major difference between the Navier-Stokes equations and the Euler equations is the dissipative transport phenomena. The impact of this phenomena in a system is ____ |
A. | They decrease entropy |
B. | They increase entropy |
C. | They increase internal energy |
D. | They decrease internal energy |
Answer» C. They increase internal energy | |
3. |
Which is the diffusion terms of the y-momentum equation? |
A. | \(\frac{\partial\tau_{xy}}{\partial x}+\frac{\partial\tau_{yy}}{\partial y}+\frac{\partial\tau_{zy}}{\partial z}\) |
B. | \(\frac{\partial\tau_{yx}}{\partial x}+\frac{\partial\tau_{yy}}{\partial y}+\frac{\partial\tau_{yz}}{\partial z}\) |
C. | \(\frac{\partial\tau_{xx}}{\partial x}+\frac{\partial\tau_{yx}}{\partial x}+\frac{\partial\tau_{zx}}{\partial x}\) |
D. | \(\frac{\partial\tau_{xy}}{\partial y}+\frac{\partial\tau_{yy}}{\partial y}+\frac{\partial\tau_{zy}}{\partial y}\) |
Answer» B. \(\frac{\partial\tau_{yx}}{\partial x}+\frac{\partial\tau_{yy}}{\partial y}+\frac{\partial\tau_{yz}}{\partial z}\) | |
4. |
The viscosity terms in x-momentum equation is \(\frac{\partial\tau_{xx}}{\partial x}+\frac{\partial\tau_{yx}}{\partial y}+\frac{\partial\tau_{zx}}{\partial z}\). In a more general form, this becomes div(μ gradu). Which of these relations is used for this transformation? |
A. | Thermodynamic relations |
B. | Stress-strain relations |
C. | Fluid flow relations |
D. | Geometric relations |
Answer» C. Fluid flow relations | |
5. |
The diffusion term in the general transport equation is div(Γgradφ). While equating this with the Navier-Stokes equations, what is Γ? |
A. | k |
B. | λ |
C. | μ |
D. | \(\vec{V}\) |
Answer» D. \(\vec{V}\) | |
6. |
The Navier-Stokes equations are ____ system of equations. |
A. | coupled |
B. | uncoupled |
C. | exponential |
D. | radical |
Answer» B. uncoupled | |
7. |
Turbulence problems particularly depend on this term of the Navier-Stokes equations. Which is that term? |
A. | Rate of change term |
B. | Convection term |
C. | Diffusion term |
D. | Source term |
Answer» D. Source term | |
8. |
The Navier-Stokes equations are all partial differential equations. What will be the best reason behind this? |
A. | Ordinary differentials are not present in the Navier-Stokes equations |
B. | The dependent variables are functions of all of the independent variables |
C. | Each dependent variable depends on only one of the independent variables |
D. | Partial differentials are only present in the Navier-Stokes equations |
Answer» C. Each dependent variable depends on only one of the independent variables | |
9. |
What are the dependent variables in the Navier-Stokes equations? |
A. | τ,T,p,ρ |
B. | p,ρ,T |
C. | u,v,w,T,p,ρ |
D. | u,v,w,T,p |
Answer» D. u,v,w,T,p | |
10. |
What are the independent variables in the Navier-Stokes equations? |
A. | x, y, z, ρ |
B. | x, y, z, τ |
C. | x, y, z, t, ρ |
D. | x, y, z, t |
Answer» E. | |