Unit 3: AEROENGINE AND PROPELLER NOISE - Subjective Questions

ASE417 — Aeroacoustics • Practice Questions with Detailed Answers

20 questions

1

Identify and explain the principal noise sources associated with an aircraft propeller.

2

Distinguish between propeller thickness noise and loading noise.

3

Explain blade-passing frequency and the harmonic character of propeller noise.

4

Describe the frequency-domain procedure used to predict tonal noise from a propeller.

5

Explain how Fourier analysis is used in frequency-domain propeller-noise prediction.

6

Describe time-domain prediction of propeller noise using retarded time.

7

State the role of the Ffowcs Williams-Hawkings equation in time-domain propeller-noise prediction.

8

Compare frequency-domain and time-domain methods for predicting propeller noise.

9

Classify the major aeroengine noise sources and explain their physical origins.

10

Explain how rotor-stator interaction generates tone noise in an axial-flow fan or compressor.

11

Derive the circumferential mode-order relation for rotor-stator interaction and explain the Tyler-Sofrin rule.

12

Discuss the factors controlling rotor-stator interaction tone levels and methods used to reduce them.

13

Describe the formation of shockwave noise in a transonic fan or compressor.

14

What are multiple pure tones, or buzz-saw noise, in a fan? Explain their origin and control.

15

Distinguish between direct and indirect combustion noise in an aeroengine.

16

Explain the mechanisms, characteristics, and control of combustion noise.

17

Explain the physical mechanism of turbulent mixing noise from a subsonic jet.

18

Using Lighthill's acoustic analogy, outline why jet noise has a strong dependence on jet velocity.

19

Differentiate turbulent mixing noise, broadband shock-associated noise, and screech in jet exhausts.

20

Compare the directivity and dominant operating conditions of fan, combustion, and jet noise in a turbofan engine.