Explore topic-wise MCQs in Computational Fluid Dynamics.

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.

Reynolds number gives the relative importance of __________

A. viscous force and tangential force
B. inertia force and viscous force
C. inertia force and pressure force
D. pressure force and viscous force
Answer» C. inertia force and pressure force
2.

Transfer of kinetic energy from large eddies to smaller eddies is called as _________

A. Energy cascade
B. Momentum cascade
C. Energy decomposition
D. Momentum decomposition
Answer» B. Momentum cascade
3.

Large eddies are _________

A. two-dimensional and isotropic
B. two-dimensional and isotropic
C. three-dimensional and anisotropic
D. two-dimensional and anisotropic
Answer» D. two-dimensional and anisotropic
4.

Which of these is highly energetic?

A. Kolmogorov micro-scale eddies
B. Small eddies
C. Medium eddies
D. Large eddies
Answer» E.
5.

Which of these is correct for large eddies?

A. High viscosity and linear momentum are conserved
B. Low viscosity and linear momentum are conserved
C. High viscosity and angular momentum are conserved
D. Low viscosity and angular momentum are conserved
Answer» E.
6.

Large turbulent eddies extract energy from the mean flow by this process.

A. Energy decomposition
B. Eddy extracting
C. Vortex stretching
D. Substantial variation
Answer» D. Substantial variation
7.

Eddies in turbulent flows result in _________

A. high diffusion coefficients
B. less diffusion coefficients
C. high value of the source term
D. low value of the source term
Answer» B. less diffusion coefficients
8.

Represent the velocity of turbulent flow using Reynolds decomposition.

A. Steady velocity + Mean velocity
B. Steady velocity + Fluctuating component of velocity
C. Variation in velocity + Fluctuating component of velocity
D. Mean variation + Fluctuating component of velocity
Answer» C. Variation in velocity + Fluctuating component of velocity
9.

The mathematical technique used to represent the random nature of the turbulent flow.

A. RANS
B. Reynolds decomposition
C. Parallel decomposition
D. DNS
Answer» C. Parallel decomposition
10.

What is Reynolds stress?

A. Stress due to velocity fluctuations
B. Tangential component of pressure
C. Stress due to pressure fluctuations
D. Normal component of viscosity
Answer» B. Tangential component of pressure