Unit 1: Concepts of compressible flow - Subjective Questions

ASE204 — Aerodynamics-Ii • Practice Questions with Detailed Answers

20 questions

1

Define compressible flow and explain its scope in aerodynamics. Under what conditions can compressibility effects be neglected?

2

What is an isentropic flow? State the assumptions and important relations used in the analysis of an isentropic perfect-gas flow.

3

Write and explain the continuity and momentum equations for steady one-dimensional compressible flow.

4

Derive the steady-flow energy equation for an adiabatic compressible flow and obtain the relation between static and stagnation temperature.

5

Explain the important reference velocities used in compressible-flow analysis.

6

Define a stagnation state and derive the isentropic stagnation-to-static pressure and density relations for a perfect gas.

7

Derive an expression for the velocity of sound in a perfect gas and explain its physical meaning.

8

Define Mach number and explain its physical significance in compressible flow.

9

What is a critical state in compressible flow? Derive the critical temperature, pressure, and density ratios relative to stagnation conditions.

10

Distinguish between Mach number, critical-state Mach number, and the critical Mach number of an aircraft or aerofoil.

11

Derive the area-velocity relation for steady, one-dimensional, isentropic compressible flow and discuss its implications for nozzles and diffusers.

12

Obtain the isentropic static-to-stagnation property relations in terms of Mach number.

13

Classify and explain the different types of waves encountered in compressible flow.

14

Explain the formation of a Mach cone and derive the expression for the Mach angle.

15

Describe the different compressible-flow regimes based on Mach number and state the major characteristics of each.

16

Explain how increasing Mach number affects pressure, density, temperature, and aerodynamic behavior in compressible flow.

17

Compare compression waves, shock waves, and expansion waves in a supersonic flow.

18

Derive the relationship between the ordinary Mach number and the critical velocity parameter .

19

For air with , determine the critical static-to-stagnation temperature, pressure, and density ratios. Explain their significance.

20

Air flows isentropically at with . Calculate the stagnation-to-static temperature, pressure, and density ratios and the Mach angle.