Explore topic-wise MCQs in Computational Fluid Dynamics.

This section includes 8 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.

Equations of state provide the linkage between ___________ and ____________

A. Conservative, non-conservative equation
B. Eulerian, Lagrangian equations
C. Energy equation, mass and momentum equations
D. Differential, Integral equations
Answer» D. Differential, Integral equations
2.

Energy conservation equation is necessary to solve this property of fluid flow.

A. Pressure
B. Temperature
C. Density
D. Velocity
Answer» C. Density
3.

Which is/are the conservation laws that are enough to solve a complete fluid problem?

A. Energy and momentum conservation
B. Mass and energy conservation
C. Mass and momentum conservation
D. Mass equation
Answer» D. Mass equation
4.

We can describe the state of a substance in thermodynamic equilibrium using two state variables. What are these two variables?

A. Density and temperature
B. Density and pressure
C. Pressure and Temperature
D. Velocity and Temperature
Answer» B. Density and pressure
5.

Fluid velocity is very high. Will thermodynamic equilibrium be applicable to fluid flows?

A. Yes, the external conditions help them stay in thermodynamic equilibrium
B. No, their flow properties change abruptly
C. No, they are influenced by external conditions
D. Yes, the fluid can thermodynamically adjust itself quickly to be in thermodynamic equilibrium
Answer» E.
6.

Relationship between thermodynamic variables of a flow field can be obtained through ___________

A. Momentum conservation
B. Thermodynamic equilibrium
C. Energy equations
D. Zeroth law of thermodynamics
Answer» C. Energy equations
7.

Among the unknowns of a flow field, some of the properties are given below. Which set contains only thermodynamic properties?

A. Density, pressure, specific internal energy, temperature
B. Density, velocity, specific internal energy, temperature
C. Velocity, pressure, specific internal energy, temperature
D. Density, pressure, specific internal energy, Velocity
Answer» B. Density, velocity, specific internal energy, temperature
8.

How many equations are related to solving a flow field?

A. 2
B. 3
C. 5
D. 4
Answer» D. 4