This equation relates the unsteady density perturbation to the divergence of the velocity perturbation.
Incorrect! Try again.
5Which feature of a vortex flow is most directly associated with sound generation?
Introduction to sound generation induced by vortex flow
Easy
A.Constant fluid temperature
B.Unsteady vortex motion
C.Uniform static pressure
D.Steady rigid rotation
Correct Answer: Unsteady vortex motion
Explanation:
Sound is generated when vortex motion causes time-dependent pressure and velocity fluctuations.
Incorrect! Try again.
6What physical quantity describes the local rotation of a fluid element?
Introduction to sound generation induced by vortex flow
Easy
A.Enthalpy
B.Porosity
C.Vorticity
D.Viscosity
Correct Answer: Vorticity
Explanation:
Vorticity is the curl of velocity and measures the local rotational motion of the fluid.
Incorrect! Try again.
7Why can a vortex passing near a solid edge produce sound?
Introduction to sound generation induced by vortex flow
Easy
A.The edge scatters flow disturbances
B.The edge stops molecular motion
C.The edge eliminates all pressure
D.The edge removes fluid density
Correct Answer: The edge scatters flow disturbances
Explanation:
A solid edge can scatter hydrodynamic pressure fluctuations from a vortex into propagating acoustic waves.
Incorrect! Try again.
8In Lighthill's acoustic analogy, turbulence in free space is primarily represented as which type of sound source?
Introduction to sound generation induced by vortex flow
Easy
A.A monopole source
B.A dipole source
C.A quadrupole source
D.A static source
Correct Answer: A quadrupole source
Explanation:
Lighthill's analogy primarily represents unbounded turbulent flow as a distribution of quadrupole sources.
Incorrect! Try again.
9What is a blade cascade?
Analysis of fan/compressor cascade
Easy
A.A porous acoustic sheet
B.A single circular duct
C.A periodic row of blades
D.A stationary pressure sensor
Correct Answer: A periodic row of blades
Explanation:
A cascade is an idealized periodic arrangement of blades used to study fan and compressor flows.
Incorrect! Try again.
10Which expression gives the blade-passing frequency for a rotor with blades rotating at frequency ?
Analysis of fan/compressor cascade
Easy
A.
B.
C.
D.
Correct Answer:
Explanation:
Each of the blades passes a fixed point once per revolution, so the blade-passing frequency is .
Incorrect! Try again.
11How is cascade solidity commonly defined?
Analysis of fan/compressor cascade
Easy
A.Blade chord divided by pitch
B.Blade pitch divided by chord
C.Blade speed divided by density
D.Blade span divided by pressure
Correct Answer: Blade chord divided by pitch
Explanation:
Cascade solidity is the ratio of blade chord to blade pitch , written as .
Incorrect! Try again.
12What commonly produces tonal noise in a rotor-stator fan stage?
Analysis of fan/compressor cascade
Easy
A.Constant ambient humidity
B.Uniform flow through an empty duct
C.Steady pressure in the reservoir
D.Rotor wakes interacting with stators
Correct Answer: Rotor wakes interacting with stators
Explanation:
Periodic rotor wakes strike the stator blades and create pressure fluctuations at discrete frequencies.
Incorrect! Try again.
13What is the main mechanism of aerodynamic trailing-edge noise?
Vortex sound model of trailing edge noise and liner impedance
Easy
A.Reflection of sunlight from the blade surface
B.Expansion of the stationary blade material
C.Heating of fluid at the leading edge
D.Scattering of turbulent fluctuations at the trailing edge
Correct Answer: Scattering of turbulent fluctuations at the trailing edge
Explanation:
Boundary-layer turbulence is scattered into sound when it passes over a sharp trailing edge.
Incorrect! Try again.
14Acoustic liner impedance is commonly defined as the ratio of acoustic pressure to which quantity?
Vortex sound model of trailing edge noise and liner impedance
Easy
A.Steady fluid density
B.Mean fluid temperature
C.Normal acoustic velocity
D.Tangential blade force
Correct Answer: Normal acoustic velocity
Explanation:
The liner impedance is commonly written as , where is the normal acoustic velocity.
Incorrect! Try again.
15Which part of acoustic impedance represents energy dissipation?
Vortex sound model of trailing edge noise and liner impedance
Easy
A.The convective part
B.The reactive part
C.The resistive part
D.The geometric part
Correct Answer: The resistive part
Explanation:
The real, or resistive, part of impedance describes acoustic energy dissipated by the liner.
Incorrect! Try again.
16What is the main purpose of an acoustic liner in a fan or compressor duct?
Vortex sound model of trailing edge noise and liner impedance
Easy
A.To increase blade count
B.To raise rotor speed
C.To absorb acoustic energy
D.To generate stronger vortices
Correct Answer: To absorb acoustic energy
Explanation:
An acoustic liner reduces noise by absorbing and dissipating part of the acoustic energy in the duct.
Incorrect! Try again.
17What distinguishes a perforated plate from a solid plate?
Vortex sound interaction of perforated plates
Easy
A.It contains an array of openings
B.It contains no solid material
C.It produces no flow resistance
D.It has no measurable thickness
Correct Answer: It contains an array of openings
Explanation:
A perforated plate contains holes that permit oscillatory or mean flow through the plate.
Incorrect! Try again.
18Where are vortices commonly formed when oscillatory flow passes through a perforated plate?
Vortex sound interaction of perforated plates
Easy
A.Inside the solid material
B.At the duct centerline
C.Far upstream of the plate
D.At the hole edges
Correct Answer: At the hole edges
Explanation:
Flow separates at the sharp edges of the holes, producing vortices that can interact with the acoustic field.
Incorrect! Try again.
19What does the porosity of a perforated plate represent?
Vortex sound interaction of perforated plates
Easy
A.The ratio of thickness to sound speed
B.The ratio of chord to blade pitch
C.The ratio of pressure to temperature
D.The ratio of open area to total area
Correct Answer: The ratio of open area to total area
Explanation:
Porosity is the fraction of the plate's total surface area occupied by openings.
Incorrect! Try again.
20How can vortex shedding at perforation edges affect an incident sound field?
Vortex sound interaction of perforated plates
Easy
A.It can dissipate acoustic energy
B.It can remove plate thickness
C.It can stop all mean flow
D.It can eliminate fluid viscosity
Correct Answer: It can dissipate acoustic energy
Explanation:
Vortex formation and shedding can convert part of the organized acoustic energy into dissipative flow motion.
Incorrect! Try again.
21For small perturbations about a uniform mean flow in the -direction, which operator replaces the ordinary time derivative in the linearized acoustic equations?
Basic linearized unsteady aerodynamic equations
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The material derivative follows disturbances convected by the uniform mean flow, so it contains the term .
Incorrect! Try again.
22A uniform fluid has density and sound speed . Under an isentropic linearization, what pressure perturbation corresponds to ?
Basic linearized unsteady aerodynamic equations
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The linearized isentropic relation is , giving .
Incorrect! Try again.
23For an inviscid uniform medium at rest, the linearized continuity and momentum equations are combined to obtain which equation for ?
Basic linearized unsteady aerodynamic equations
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Eliminating velocity and density perturbations yields the homogeneous acoustic wave equation with propagation speed .
Incorrect! Try again.
24A plane disturbance in a uniform flow is represented by . For a downstream-propagating acoustic wave, which dispersion relation applies?
Basic linearized unsteady aerodynamic equations
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Relative to the stationary observer, downstream sound travels at the mean-flow velocity plus the sound speed.
Incorrect! Try again.
25An isolated vortex translates steadily through an otherwise unbounded, uniform inviscid fluid. Why is its far-field sound generally weak?
Introduction to sound generation induced by vortex flow
Medium
A.Its flow is mainly hydrodynamic and changes little in time
B.Its velocity is always lower than the local acoustic particle velocity
C.Its circulation forces the acoustic pressure to remain spatially uniform
D.Its vorticity directly absorbs every outgoing acoustic disturbance
Correct Answer: Its flow is mainly hydrodynamic and changes little in time
Explanation:
Efficient radiation usually requires vortex acceleration, deformation, or interaction with another vortex, a boundary, or a nonuniform flow.
Incorrect! Try again.
26A compact vortex passes close to a rigid edge and produces a rapidly varying force on it. Which leading acoustic source type best represents this process?
Introduction to sound generation induced by vortex flow
Medium
A.A monopole associated with steady circulation
B.A spatially uniform source caused by conservation of total vorticity throughout the entire surrounding fluid
C.A dipole associated with fluctuating force
D.A quadrupole associated only with entropy variation
Correct Answer: A dipole associated with fluctuating force
Explanation:
A fluctuating aerodynamic force exerted on a solid surface produces dipole-like acoustic radiation.
Incorrect! Try again.
27In Lighthill's acoustic analogy at low Mach number, vortex-flow sound in the fluid volume is primarily associated with derivatives of which stress contribution?
Introduction to sound generation induced by vortex flow
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The Reynolds-stress term is the dominant part of Lighthill's stress tensor for low-Mach-number, nearly isentropic vortex flows.
Incorrect! Try again.
28Two equal, like-signed vortices orbit one another. If their separation is reduced while circulation remains fixed, what is the expected qualitative acoustic effect?
Introduction to sound generation induced by vortex flow
Medium
A.The characteristic frequency increases
B.The characteristic frequency becomes zero
C.The frequency remains fixed because circulation cannot influence the angular velocity of either vortex
D.The characteristic frequency decreases
Correct Answer: The characteristic frequency increases
Explanation:
The vortex-pair angular velocity scales approximately as circulation divided by separation squared, so reducing separation increases the source frequency.
Incorrect! Try again.
29A cascade has blade chord and pitch . What is its solidity?
Analysis of fan/compressor cascade
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
Cascade solidity is .
Incorrect! Try again.
30A harmonic disturbance reaches adjacent cascade blades with a constant phase difference . Which expression describes the complex amplitude on blade number relative to blade zero?
Analysis of fan/compressor cascade
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
A constant interblade phase angle accumulates from blade to blade, giving a phase shift of on blade .
Incorrect! Try again.
31For an unlined circular duct without mean flow, a mode has axial wavenumber satisfying . Under which condition is the mode cut on?
Analysis of fan/compressor cascade
Medium
A.
B.
C. may have any value because every circumferential mode propagates axially without attenuation
D.
Correct Answer:
Explanation:
The mode propagates when is real, which requires .
Incorrect! Try again.
32A rotor with blades rotates at . What is the blade-passing frequency observed by a stationary vane row?
Analysis of fan/compressor cascade
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
The rotation rate is , so the blade-passing frequency is .
Incorrect! Try again.
33In a vortex model of trailing-edge noise, what principally converts a convecting vortical disturbance into propagating sound?
Vortex sound model of trailing edge noise and liner impedance
Medium
A.Viscous diffusion in an unbounded uniform flow
B.Complete conversion of vorticity into entropy before the disturbance reaches the edge
C.Uniform convection far upstream of the blade
D.Scattering by the trailing-edge discontinuity
Correct Answer: Scattering by the trailing-edge discontinuity
Explanation:
The trailing edge imposes a geometric and boundary-condition discontinuity that scatters hydrodynamic pressure fluctuations into acoustic waves.
Incorrect! Try again.
34The normalized acoustic impedance of a liner is at normal incidence. Using , what is the pressure reflection coefficient?
Vortex sound model of trailing edge noise and liner impedance
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
When , the liner is impedance matched to the medium, so the reflected pressure amplitude is zero.
Incorrect! Try again.
35Which impedance limit most closely represents an acoustically rigid wall when impedance is defined as ?
Vortex sound model of trailing edge noise and liner impedance
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
A rigid wall has nearly zero normal velocity for finite pressure, so the ratio becomes very large.
Incorrect! Try again.
36A liner impedance is written as . Which component directly represents time-averaged acoustic energy dissipation?
Vortex sound model of trailing edge noise and liner impedance
Medium
A.The reactance
B.The sum interpreted as a purely convective velocity correction across the lined surface
C.The resistance
D.The magnitude only
Correct Answer: The resistance
Explanation:
The real part of impedance is resistance and accounts for acoustic power absorption; reactance stores and releases energy.
Incorrect! Try again.
37When can a perforated plate most reasonably be replaced by a locally reacting, homogenized impedance boundary?
Vortex sound interaction of perforated plates
Medium
A.When hole spacing is much larger than the acoustic wavelength
B.When the plate contains only one hole whose detailed jet and edge-vortex dynamics are resolved individually
C.When every hole diameter equals one acoustic wavelength
D.When hole spacing is much smaller than the acoustic wavelength
Correct Answer: When hole spacing is much smaller than the acoustic wavelength
Explanation:
Subwavelength spacing allows the acoustic field to average over many perforations, making an effective impedance model appropriate.
Incorrect! Try again.
38A vortex convects toward a perforated plate. Which mechanism can increase sound generation compared with steady passage through an unobstructed flow?
Vortex sound interaction of perforated plates
Medium
A.Elimination of all pressure differences across the plate
B.Unsteady loading and flow through the holes
C.Replacement of the incident vortex by a perfectly steady and spatially uniform acoustic monopole field
D.Conservation of circulation without any boundary interaction
Correct Answer: Unsteady loading and flow through the holes
Explanation:
The vortex produces fluctuating pressure and hole flow, creating unsteady plate loading and small-scale vortical structures that can radiate sound.
Incorrect! Try again.
39For fixed total plate area and fixed acoustic frequency, reducing the open-area ratio generally causes which change in the effective acoustic impedance?
Vortex sound interaction of perforated plates
Medium
A.Its magnitude generally decreases
B.Its impedance always equals regardless of hole geometry, plate thickness, or mean bias flow
C.Its resistance becomes exactly zero
D.Its magnitude generally increases
Correct Answer: Its magnitude generally increases
Explanation:
A smaller open area requires larger local velocity through the holes for the same average volume flux, increasing inertial and dissipative pressure losses.
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40Why can adding a moderate bias flow through a perforated plate alter its acoustic resistance?
Vortex sound interaction of perforated plates
Medium
A.It changes vortex shedding and dissipation at hole edges
B.It removes the plate's geometric open-area ratio
C.It makes acoustic particle velocity identically zero
D.It changes only the speed of sound while leaving all near-hole flow structures and losses unaffected
Correct Answer: It changes vortex shedding and dissipation at hole edges
Explanation:
Bias flow modifies jet formation, separation, and vortex shedding at each perforation, thereby changing acoustic energy loss and resistance.
Incorrect! Try again.
41For a uniform mean flow in the -direction, an acoustic disturbance has nondimensional frequency , transverse wavenumber , and . Using , what are the possible values of ?
Basic linearized unsteady aerodynamic equations
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Substitution gives , or . Solving this quadratic yields .
Incorrect! Try again.
42A plane perturbation in a uniform inviscid flow satisfies , , and . Which linear mode does it represent?
Basic linearized unsteady aerodynamic equations
Hard
A.A downstream acoustic mode
B.An upstream acoustic mode
C.A convected entropy mode
D.A convected vortical mode
Correct Answer: A convected vortical mode
Explanation:
A vortical mode is divergence-free, carries velocity and vorticity perturbations without pressure or density fluctuations, and is convected at the mean-flow velocity.
Incorrect! Try again.
43For the positive-frequency acoustic branch in a uniform subsonic flow, . If is the angle between and the downstream direction, when does the laboratory-frame group velocity have an upstream axial component?
Basic linearized unsteady aerodynamic equations
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The axial group velocity is . It is negative only when .
Incorrect! Try again.
44A plane acoustic wave is incident at angle from the normal onto a locally reacting boundary of impedance . With no mean flow, what is the pressure reflection coefficient?
Basic linearized unsteady aerodynamic equations
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
For an oblique plane wave, . Applying the impedance condition to incident and reflected waves gives the stated coefficient.
Incorrect! Try again.
45In Howe's low-Mach-number vortex-sound analogy for homentropic flow, which term acts as the principal source of fluctuations in stagnation enthalpy ?
Introduction to sound generation induced by vortex flow
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The source is the divergence of the Lamb vector . It quantifies coupling between vorticity and velocity that can radiate acoustic energy.
Incorrect! Try again.
46Two compact vortex–body interactions produce equal, opposite, harmonically varying lift forces separated by distance , where . Relative to one isolated interaction, what characterizes their leading combined radiation?
Introduction to sound generation induced by vortex flow
Hard
A.Dipole reinforcement produces a field larger by order two
B.Quadrupole cancellation produces no radiation at any frequency
C.Monopole cancellation leaves a field smaller by order
D.Dipole cancellation leaves a field smaller by order
Correct Answer: Dipole cancellation leaves a field smaller by order
Explanation:
The two leading dipoles cancel in the compact limit. Their spatial phase difference leaves a quadrupole-like residual whose amplitude is reduced by a factor of order .
Incorrect! Try again.
47An isolated, steady vortex structure translates uniformly through an unbounded, otherwise uniform inviscid fluid. In the low-Mach-number idealization, which statement best describes its acoustic radiation?
Introduction to sound generation induced by vortex flow
Hard
A.It radiates no sustained sound without acceleration or deformation
B.It radiates a quadrupole at twice its convection frequency
C.It radiates a dipole solely because its vorticity is nonzero
D.It radiates a steady monopole proportional to its circulation
Correct Answer: It radiates no sustained sound without acceleration or deformation
Explanation:
Uniform translation can be removed by a Galilean transformation and does not create time-varying source moments. Sound requires effects such as acceleration, deformation, boundaries, or vortex interaction.
Incorrect! Try again.
48For otherwise comparable compact low-Mach-number sources, a boundary converts a free-field quadrupole into an unsteady-force dipole. If quadrupole and dipole acoustic powers scale as and , respectively, how does their power ratio scale with Mach number?
Introduction to sound generation induced by vortex flow
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The ratio scales as , with the missing velocity dimensions supplied by . Thus .
Incorrect! Try again.
49A rotor with blades interacts with a stator having vanes. At rotor harmonic , Tyler–Sofrin circumferential orders satisfy . Which order has the smallest magnitude?
Analysis of fan/compressor cascade
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Here . The integer choice gives , which has the smallest magnitude among the possible interaction orders.
Incorrect! Try again.
50In a hard-walled annular-duct approximation without mean flow, a mode satisfies . If , , and , how is the mode classified?
Analysis of fan/compressor cascade
Hard
A.Evanescent with
B.Cut-on with
C.Cut-on with
D.Exactly at cut-off with
Correct Answer: Exactly at cut-off with
Explanation:
The axial-wavenumber square is . The mode is therefore precisely at its cut-off condition.
Incorrect! Try again.
51A cascade with identical passages has Bloch circumferential order . Spatial aliasing permits physical orders for integer . Which order is not in this family?
Analysis of fan/compressor cascade
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The family is . Since is not an integer multiple of , is excluded.
Incorrect! Try again.
52A stationary stator distortion has circumferential dependence with . A rotor with blades turns at angular speed . What interblade phase angle does this disturbance impose on adjacent rotor blades, modulo ?
Analysis of fan/compressor cascade
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Adjacent rotor blades are separated by . The imposed phase shift is .
Incorrect! Try again.
53In linear trailing-edge scattering theory for a sharp edge, what is the principal role of the unsteady Kutta condition?
Vortex sound model of trailing edge noise and liner impedance
Hard
A.It requires equal normal velocities on opposite far-field rays
B.It sets the acoustic pressure to zero over the entire surface
C.It selects circulation so the trailing-edge pressure jump vanishes
D.It forces the incident vortical gust to vanish at the edge
Correct Answer: It selects circulation so the trailing-edge pressure jump vanishes
Explanation:
The Kutta condition removes the nonphysical singular edge loading by selecting the shed circulation so that the pressure difference closes smoothly at the sharp trailing edge.
Incorrect! Try again.
54A trailing-edge noise model has span much larger than the spanwise turbulence coherence length . If is doubled while all local statistics remain unchanged, what is the expected change in total radiated power?
Vortex sound model of trailing edge noise and liner impedance
Hard
A.It approximately quadruples, increasing by
B.It increases eightfold, increasing by
C.It approximately doubles, increasing by
D.It remains constant because distant strips are incoherent
Correct Answer: It approximately doubles, increasing by
Explanation:
For , independent coherent strips contribute powers rather than amplitudes. Total power therefore scales as , so doubling gives a increase.
Incorrect! Try again.
55At normal incidence and without mean flow, a liner has impedance . Using , what fraction of incident acoustic power is absorbed?
Vortex sound model of trailing edge noise and liner impedance
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The reflection coefficient is , so . The absorbed fraction is .
Incorrect! Try again.
56For a uniform tangential mean flow , let wall displacement be , let , and impose . For , which effective boundary relation follows?
Vortex sound model of trailing edge noise and liner impedance
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Using and gives . This is the convective correction underlying the Myers condition.
Incorrect! Try again.
57A zero-thickness perforated plate has identical apertures per unit area, each with Rayleigh conductivity . For and , what is the plate impedance ?
Vortex sound interaction of perforated plates
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
The conductivity per unit area is . Hence .
Incorrect! Try again.
58A perforated plate contains two aperture populations with number densities and Rayleigh conductivities . Neglecting mutual interaction, which effective impedance relates pressure jump to total area-averaged velocity?
Vortex sound interaction of perforated plates
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
All apertures experience the same pressure jump, so their volume fluxes add in parallel. The total conductivity per unit area is therefore .
Incorrect! Try again.
59A convected vortical disturbance drives a periodic row of holes at positions with hole flux . Far-field propagation at angle contributes phase . What condition gives an array-factor maximum?
Vortex sound interaction of perforated plates
Hard
A.
B.
C.
D.
Correct Answer:
Explanation:
Successive contributions differ in phase by . They add constructively when this phase is an integer multiple of .
Incorrect! Try again.
60A perforated sheet backed by a rigid cavity has normalized total impedance at normal incidence. Which condition produces critical coupling and zero reflection at a target frequency?
Vortex sound interaction of perforated plates
Hard
A. and
B. and
C. and
D. and
Correct Answer: and
Explanation:
Zero reflection requires the total surface impedance to equal the real characteristic impedance . Thus the reactances must cancel and the resistance must provide impedance matching.
Incorrect! Try again.
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