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.

The range of turbulent Prandtl number is ___________

A. 0.5 to 0.7
B. 0.7 to 0.9
C. 0.9 to 1.5
D. 1.5 to 1.7
Answer» C. 0.9 to 1.5
2.

The range of turbulent Schmidt number is ___________

A. 0.2 to 3.5
B. 0.2 to 1.5
C. 1 to 3.5
D. 0 to 0.2
Answer» B. 0.2 to 1.5
3.

Turbulent Schmidt number is used to solve ____________

A. mass transfer in a turbulent boundary layer
B. compressible flows
C. boundary layer flows
D. heat transfer in a turbulent boundary layer
Answer» B. compressible flows
4.

Turbulent Prandtl number is useful in __________

A. SST
B. DNS
C. LES
D. RANS
Answer» E.
5.

Turbulent Prandtl number is used in CFD to ____________

A. change viscosity profiles
B. change temperature profiles
C. modulate heat transfer results
D. modulate velocity profiles
Answer» D. modulate velocity profiles
6.

Which of these is correct when the turbulent Prandtl number is unity?

A. Turbulent diffusivity is zero
B. Turbulent viscosity is zero
C. The flow becomes laminar
D. The velocity and temperature profiles are identical
Answer» E.
7.

According to Reynolds analogy, what is the value of turbulent Schmidt number?

A. -1
B. 0
C. 1
D.
Answer» D.
8.

What is the unit of turbulent Schmidt/Prandtl number?

A. m<sup>2</sup>/s
B. It is dimensionless
C. m<sup>2</sup>/s<sup>2</sup>
D. m/s<sup>2</sup>
Answer» C. m<sup>2</sup>/s<sup>2</sup>
9.

Turbulent Prandtl number is the ratio of ____________

A. turbulent transport of heat to turbulent transport of momentum
B. turbulent transport of momentum to turbulent transport of heat
C. turbulent viscosity to turbulent transport of heat
D. turbulent transport of heat to turbulent viscosity
Answer» C. turbulent viscosity to turbulent transport of heat
10.

Turbulent Schmidt number is the ratio of ____________

A. turbulent viscosity to turbulent diffusivity
B. turbulent diffusivity to turbulent viscosity
C. turbulent rate to turbulent diffusivity
D. turbulent diffusivity to turbulent rate
Answer» B. turbulent diffusivity to turbulent viscosity