Unit 3: Axial Flow Compressors - Practice Quiz

ASE202 — Propulsion-I 60 Questions
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1 In an axial flow compressor, the air moves mainly in which direction?

Elementary theory of axial flow compressor Easy
A. Tangentially around the casing
B. Parallel to the shaft axis
C. Radially away from the shaft
D. Perpendicular to the shaft axis

2 What are the two principal blade rows in an axial compressor stage?

Elementary theory of axial flow compressor Easy
A. Inducer and volute
B. Rotor and stator
C. Nozzle and turbine
D. Impeller and diffuser

3 What is the primary function of the rotor in an axial compressor?

Elementary theory of axial flow compressor Easy
A. To remove heat from air
B. To add energy to air
C. To reduce the shaft speed
D. To discharge fuel into air

4 What is a primary function of an axial compressor stator?

Elementary theory of axial flow compressor Easy
A. Cooling the rotating blades
B. Diffusing and redirecting airflow
C. Adding fuel to the airflow
D. Driving the compressor shaft

5 Which velocity represents the motion of a compressor blade?

Velocity triangles Easy
A. Axial velocity
B. Blade speed
C. Absolute velocity
D. Relative velocity

6 Which relation connects absolute velocity , blade speed , and relative velocity ?

Velocity triangles Easy
A.
B.
C.
D.

7 In a velocity triangle, the whirl component of velocity acts in which direction?

Velocity triangles Easy
A. Normal direction
B. Axial direction
C. Radial direction
D. Tangential direction

8 According to the Euler compressor equation, the work input depends mainly on the change in which velocity component?

Velocity triangles Easy
A. Absolute whirl component
B. Axial velocity component
C. Radial velocity component
D. Relative axial component

9 What does the degree of reaction of an axial compressor stage indicate?

Degree of reaction Easy
A. The ratio of outlet area to inlet area
B. The ratio of blade speed to sound speed
C. The stator share of shaft power
D. The rotor share of static enthalpy rise

10 What does a degree of reaction of represent in an ideal repeating stage?

Degree of reaction Easy
A. Twice as much rotor enthalpy rise
B. No pressure rise in the rotor
C. All pressure rise in the rotor
D. Equal rotor and stator static enthalpy rise

11 Which symbol is commonly used for degree of reaction?

Degree of reaction Easy
A.
B.
C.
D.

12 Why is axial compressor flow considered three-dimensional?

Three dimensional flow Easy
A. Pressure is identical at all radii
B. Velocity varies only with time
C. Density remains fixed everywhere
D. Flow properties vary across the blade span

13 Where do endwall boundary layers develop in an axial compressor passage?

Three dimensional flow Easy
A. Outside the compressor inlet
B. Only along the shaft centerline
C. Only at the blade midpoint
D. Near the hub and casing

14 Which relation defines a free-vortex whirl distribution?

Air angle distributions for free vortex and constant reaction designs Easy
A.
B.
C.
D.

15 How does whirl velocity vary with radius in a free-vortex design?

Air angle distributions for free vortex and constant reaction designs Easy
A. It decreases as radius increases
B. It increases with radius
C. It remains constant with radius
D. It becomes zero at every radius

16 What is maintained across the blade span in a constant-reaction design?

Air angle distributions for free vortex and constant reaction designs Easy
A. Constant degree of reaction
B. Constant blade peripheral speed
C. Constant blade chord length
D. Constant annulus circumference

17 What is blade solidity in an axial compressor cascade?

Compressor blade design Easy
A. Span divided by pitch
B. Camber divided by span
C. Chord divided by pitch
D. Pitch divided by chord

18 What does the camber of a compressor blade describe?

Compressor blade design Easy
A. The blade material density
B. The curvature of its mean line
C. The speed of its leading edge
D. The spacing between blade rows

19 Which operating condition involves unstable oscillations at low compressor mass flow?

Centrifugal and axial compressor performance characteristics Easy
A. Slip
B. Choke
C. Diffusion
D. Surge

20 Which condition occurs when compressor mass flow is limited by sonic velocity in a passage?

Centrifugal and axial compressor performance characteristics Easy
A. Stall
B. Separation
C. Surge
D. Choke

21 An axial compressor rotor operates at a blade speed of . The whirl components at rotor inlet and exit are and , respectively. What is the specific work input?

Elementary theory of axial flow compressor Medium
A.
B.
C.
D.

22 Air enters a compressor stage at . The pressure ratio is , the isentropic efficiency is , and . What is the actual stagnation-temperature rise?

Elementary theory of axial flow compressor Medium
A.
B.
C.
D.

23 At a compressor rotor exit, the axial and whirl velocity components are and . What is the absolute flow angle measured from the axial direction?

Velocity triangles Medium
A.
B.
C.
D.

24 At rotor inlet, , , and . Using , what is the relative inlet angle measured from the axial direction?

Velocity triangles Medium
A.
B.
C.
D.

25 For a repeating axial-compressor stage with constant axial velocity, , , and . What is the degree of reaction?

Degree of reaction Medium
A.
B.
C.
D.

26 In an ideal repeating compressor stage with constant axial velocity, what does a degree of reaction of indicate?

Degree of reaction Medium
A. Rotor and stator have equal static enthalpy rises
B. Stator produces all of the stagnation enthalpy rise
C. Rotor and stator have equal stagnation enthalpy rises
D. Rotor produces all of the static enthalpy rise

27 If radial velocity is negligible, which radial-equilibrium relation applies to an axisymmetric compressor flow with tangential velocity ?

Three dimensional flow Medium
A.
B.
C.
D.

28 Why do measured compressor-blade exit angles commonly vary near the hub and casing compared with a two-dimensional midspan prediction?

Three dimensional flow Medium
A. Uniform axial velocity eliminates passage-vortex formation
B. Blade rotation removes all radial pressure gradients
C. Tip clearance forces identical turning across the span
D. Endwall boundary layers generate secondary and corner flows

29 In a free-vortex compressor design, both inlet and exit whirl components vary as . Why is the Euler work approximately constant along the blade span?

Air angle distributions for free vortex and constant reaction designs Medium
A. Blade speed varies as , while whirl change varies as
B. Blade speed varies as , while whirl change varies as
C. Axial velocity and blade speed both vary as
D. Whirl velocity and blade speed both remain radially constant

30 For free-vortex flow with constant axial velocity, how does the magnitude of absolute flow angle generally change from hub to tip?

Air angle distributions for free vortex and constant reaction designs Medium
A. It decreases because
B. It remains constant because is constant
C. It increases because
D. It reverses because axial velocity changes sign

31 At one radius of a constant-reaction design, , , and . Assuming constant axial velocity, find .

Air angle distributions for free vortex and constant reaction designs Medium
A.
B.
C.
D.

32 For a constant-reaction compressor design with constant axial velocity and angular speed, how must vary with radius?

Air angle distributions for free vortex and constant reaction designs Medium
A. It must decrease inversely with radius
B. It must increase with the square of radius
C. It must remain constant with radius
D. It must increase linearly with radius

33 A rotor blade has a metal inlet angle of , while the relative inlet flow angle is under the same sign convention. What is the incidence angle?

Compressor blade design Medium
A.
B.
C.
D.

34 For a fixed flow turning and blade profile, what is a likely consequence of increasing blade solidity?

Compressor blade design Medium
A. Lower loading per blade but greater wetted-area loss
B. Higher loading per blade but lower wetted-area loss
C. Lower diffusion control and unchanged profile loss
D. Higher incidence sensitivity and zero friction increase

35 A rotor passage has relative inlet and exit speeds of and . Using a de Haller limit of , how should the design be assessed?

Compressor blade design Medium
A. Unacceptable because the ratio is
B. Acceptable because the ratio is
C. Acceptable because the ratio is
D. Unacceptable because the ratio is

36 For a rotor, use . If , , , and , what is ?

Compressor blade design Medium
A.
B.
C.
D.

37 At a fixed corrected speed, what operating limits are normally approached as compressor flow moves below and above the stable range?

Centrifugal and axial compressor performance characteristics Medium
A. Low flow approaches choke; high flow approaches surge
B. Low flow approaches choke; high flow approaches stall only
C. Low flow approaches surge; high flow approaches windmilling
D. Low flow approaches surge; high flow approaches choke

38 Which pair correctly represents corrected mass flow and corrected rotational speed, apart from fixed reference-state constants?

Centrifugal and axial compressor performance characteristics Medium
A. and
B. and
C. and
D. and

39 Which comparison generally explains why centrifugal compressors are favored for compact low-flow applications while axial compressors are favored for large gas turbines?

Centrifugal and axial compressor performance characteristics Medium
A. Centrifugal stages require no diffuser; axial stages require no stator
B. Centrifugal stages pass greater frontal-area flow; axial stages give higher pressure rise
C. Centrifugal stages avoid choking; axial stages avoid rotating stall
D. Centrifugal stages give higher pressure rise; axial stages pass greater frontal-area flow

40 A compressor initially operates at the intersection of its constant-speed characteristic and a system resistance curve. What usually happens when a downstream throttle is partly closed?

Centrifugal and axial compressor performance characteristics Medium
A. Flow decreases and the operating point moves toward choke
B. Flow increases and the operating point moves toward surge
C. Flow decreases and the operating point moves toward surge
D. Flow increases and the operating point moves toward choke

41 An axial-compressor stage has , , and . At , take , , and total-to-total efficiency . Neglecting mechanical losses, what is the stage total-pressure ratio?

Elementary theory of axial flow compressor Hard
A. Approximately
B. Approximately
C. Approximately
D. Approximately

42 Five identical axial stages each produce an actual stagnation-temperature rise of . The first-stage inlet temperature is , and every stage has and . Assuming no interstage cooling, what is the overall pressure ratio?

Elementary theory of axial flow compressor Hard
A. Approximately
B. Approximately
C. Approximately
D. Approximately

43 At a rotor inlet, and . The axial velocity falls from its design value of to while the inlet whirl remains fixed. If , what incidence change results for an unchanged blade metal angle?

Velocity triangles Hard
A. An increase of approximately
B. A decrease of approximately
C. An increase of approximately
D. A decrease of approximately

44 A repeating -reaction stage has constant axial velocity, flow coefficient , and loading coefficient . Angles are measured as positive magnitudes from the axial direction. Which set of rotor angles is consistent with these conditions?

Velocity triangles Hard
A. , , ,
B. , , ,
C. , , ,
D. , , ,

45 A repeating axial-compressor stage has constant axial velocity, , , and . Neglecting radial velocity and losses, what fraction of the stage static-enthalpy rise occurs in the rotor?

Degree of reaction Hard
A.
B.
C.
D.

46 In an axisymmetric annulus, radial velocity is negligible and the absolute swirl follows a free vortex, . If density is treated as locally constant, which pressure difference satisfies radial equilibrium between hub radius and tip radius ?

Three dimensional flow Hard
A.
B.
C.
D.

47 An inviscid, adiabatic rotor streamline migrates radially while the rotor angular speed remains constant. Between two points, the quantity increases by . What follows from conservation of rothalpy?

Three dimensional flow Hard
A. The static enthalpy remains constant along the streamline
B. The relative stagnation enthalpy increases by
C. The absolute stagnation enthalpy decreases by
D. The absolute stagnation enthalpy increases by

48 At rotor inlet and exit, the whirl distributions are and . For a rotor with , which radial work distribution results?

Air angle distributions for free vortex and constant reaction designs Hard
A. , increasing outward
B. , decreasing outward
C. , independent of radius
D. , increasing quadratically

49 A free-vortex flow has uniform . At mean radius , . What are the approximate absolute flow angles at hub radius and tip radius ?

Air angle distributions for free vortex and constant reaction designs Hard
A. and
B. and
C. and
D. and

50 A design must have both radius-independent work and constant reaction . Let , so that . Which pair of whirl distributions satisfies both requirements?

Air angle distributions for free vortex and constant reaction designs Hard
A. and
B. and
C. and
D. and

51 At radius , a rotor runs at and provides . If the local reaction is , what are and ?

Air angle distributions for free vortex and constant reaction designs Hard
A. and
B. and
C. and
D. and

52 A rotor section has , , whirl change , and solidity . Using , what is its diffusion factor?

Compressor blade design Hard
A. Approximately
B. Approximately
C. Approximately
D. Approximately

53 A zero-inlet-whirl rotor has constant axial velocity, , and loading coefficient restricted to . If the de Haller criterion requires , what is the largest allowable ?

Compressor blade design Hard
A. Approximately
B. Approximately
C. Approximately
D. Approximately

54 For uniform axial velocity and free-vortex inlet swirl , define and . In an annulus where , which blade-twist trend follows as radius increases?

Compressor blade design Hard
A. The absolute angle decreases while the relative angle increases
B. The absolute angle increases while the relative angle decreases
C. Both absolute and relative angles increase with radius
D. Both absolute and relative angles decrease with radius

55 A rotor design has diffusion factor at the hub and at the tip. The work distribution and local velocity triangles must remain unchanged. Which modification most directly reduces hub diffusion factor according to Lieblein's expression?

Compressor blade design Hard
A. Decrease hub solidity while retaining the local velocity triangle
B. Decrease tip chord while leaving the hub geometry unchanged
C. Increase hub stagger while leaving solidity and incidence unchanged
D. Increase hub solidity while retaining the local velocity triangle

56 A centrifugal impeller has , , backswept exit angle measured from the tangential direction, and slip factor . Using and zero inlet whirl, what is the Euler work?

Centrifugal and axial compressor performance characteristics Hard
A. Approximately
B. Approximately
C. Approximately
D. Approximately

57 A compressor operates at fixed physical speed and mass flow while inlet total temperature rises and inlet total pressure remains constant. Using and , how does its plotted operating point move?

Centrifugal and axial compressor performance characteristics Hard
A. Toward lower corrected speed and lower corrected flow
B. Toward higher corrected speed and lower corrected flow
C. Toward higher corrected speed and higher corrected flow
D. Toward lower corrected speed and higher corrected flow

58 At a compressor-system equilibrium, the local compressor pressure-rise slope is , while the system-resistance slope is . Under a quasi-steady perturbation model, what is the local stability conclusion?

Centrifugal and axial compressor performance characteristics Hard
A. Unstable, because the compressor slope is below the system slope
B. Stable, because both characteristic slopes are locally positive
C. Stable, because the compressor slope is below the system slope
D. Unstable, because both characteristic slopes are locally positive

59 During a test, several circumferential pressure probes detect a low-speed cell moving around an axial-compressor annulus. Mean throughflow remains forward, and the plenum shows no large global pressure oscillation. Which phenomenon is present?

Centrifugal and axial compressor performance characteristics Hard
A. Deep surge with periodic flow reversal
B. Centrifugal impeller inducer recirculation
C. Stonewall choking at the rotor throat
D. Rotating stall without full-system surge

60 Which observation most reliably identifies aerodynamic choking on either an axial or centrifugal compressor map?

Centrifugal and axial compressor performance characteristics Hard
A. Lowering downstream pressure no longer increases corrected mass flow
B. Lowering shaft speed no longer decreases corrected mass flow
C. Raising downstream pressure no longer increases total-pressure ratio
D. Raising inlet pressure no longer increases physical mass flow