FLUID MECHANICS (SET 1)

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B.20 KPa

A Bingham fluid of viscosity μ = 10 Pa.s and yield stress, τ0 = 10 KPa, is shared between flat parallel plates separated by a distance of 10-3 m. The top plate is moving with a velocity of 1 m/s. The shear stress on the plate is A.10 KPa B.20 KPa C.30 KPa D.40 KPa

B.one fourth as that of A.

A particle A of diameter 10 microns settles in an oil of specific gravity 0.9 and viscosity 10 poise under Stoke's law. A particle B with diameter 20 microns settling in the same oil will have a settling velocity A.same as that of A. B.one fourth as that of A. C.twice as that of A. D.four times as that of A.

B.outside diameter

All pipes of a particular nominal size have the same A.inside diameter B.outside diameter C.thickness D.none of these

A.inertial forces control and viscous forces are unimportant

At high Reynolds number A.inertial forces control and viscous forces are u nimportant. B.viscous forces predominate. C.inertial forces are unimportant and viscous forces control. D.none of these.

A.2 to 3

Brownian movement is prominent in the particle size range of __________ microns in case of settling of a particle in a fluid. A.2 to 3 B.0.01 to 0.10 C.200 to 300 D.100 to 1000

B.more than

Co-efficient of velocity is __________ the coefficient of discharge. A.less than B.more than C.equal to D.not related to

A.ML-1T-1

Dimension of absolute viscosity is A.ML-1T-1 B.MLT-1 C.ML-1T D.MLT

A.FL-1

Dimension of surface tension is(where, F = force, L = length) A.FL-1 B.F-1 . L C.F.L-2 D.F-2 . L

D.directional control

Foot valves provided in pumps are __________ valves. A.relief B.three/four way C.pressure reducing D.directional control

A.Vs/Dp2

For Laminar flow through a packed bed, the pressure drop is proportional to (Vs is the superficial liquid velocity and Dp is the particle diameter) A.Vs/Dp2 B.Vs2/Dp2 C.Vs2/Dp3 D.Vs/Dp3

B.Weight = buoyancy + drag

For a particle settling in water at its terminal settling velocity, which of the following is true ? A.Buoyancy = weight + drag B.Weight = buoyancy + drag C.Drag = buoyancy + weight D.Drag = weight

C.diaphragm

For the transfer of solution of thick slurry, the pump used is a __________ pump. A.reciprocating B.gear C.diaphragm D.centrifugal

C.both (a) and (b)

Head developed by a centrifugal pump depends on its A.speed B.impeller diameter C.both (a) and (b) D.neither (a) nor (b)

B.mean velocity

Hydraulic mean depth (Dm) for a circular pipe of diameter 'D' flowing full is 0.25 D. For a circular channel, at Dm = 0.3 D, gives the condition for the maximum A.flow rate B.mean velocity C.both 'a' & 'b' D.neither 'a' nor 'b'

A.increases

If the discharge of a centrifugal pump is throttled, then its suction lift A.increases B.decreases C.remains unchanged D.data insufficient to predict

C.friction co-efficient for flows at equal Reynold

In case of hydraulically smooth pipe, the resistance to flow depends only on the Reynolds number, whereas for a hydraulically rough pipe, the resistance to flow is governed by the relative roughness. Two pipes are said to have the same hydraulic roughness, when they have equal values of A.relative roughness. B.absolute roughness. C.friction co-efficient for flows at equal Reynold number. D.all (a), (b) & (c)

B.tungsten

The resistance wire used in a hot wire anemometer for conducting electrical current is made of A.copper B.tungsten C.chromium D.aluminium

D.flow pressure approaches its vapor pressure at the prevailing temperature.

In fluid flow, cavitation is caused, if the A.fluid velocity decreases to zero. B.total energy decreases. C.both (a) and (b). D.flow pressure approaches its vapor pressure at the prevailing temperature.

B.2100

Laminar flow of a Newtonion fluid ceases to exist, when the Reynolds number exceeds A.4000 B.2100 C.1500 D.3000

C.8

Maximum theoretical suction lift for water at 15°C by a centrifugal pump is 34 ft. The same for water at 90°C will be __________ ft. A.40 B.34 C.8 D.37

D.centrifugal

Molten soap mass is transported by a __________ pump. A.diaphragm B.reciprocating C.gear D.centrifugal

A.sleevejoint

Most commonly used joint in the underground pipe lines is the A.sleevejoint B.coupling C.flange D.expansion joint

A.smaller than

Nominal size of the discharge pipe of a pump is usually __________ the nominal size of the inlet pipe. A.smaller than B.larger than C.same as D.twice

A.A forced vortex occurs when fluid rotates as a solid about an axis.

Pick out the correct statement. A.A forced vortex occurs when fluid rotates as a solid about an axis. B.In laminar flow, Newton's law of viscosity does not apply. C.A free vortex occurs, when fluidrotates as a solid. D.In turbulent flow, there are neither cross-currents nor eddies.

D.both (b) and (c)

Pick out the wrong statement. A.Momentum transfer in laminar flow results from veclocity gradient. B.A fluid in equilibrium is not free from shear stress. C.The viscosity of a non-Newtonion fluid is a function of temperature only. D.both (b) and (c)

C.more than

Power loss in an orificemeter is __________ that in a venturimeter. A.less than B.same as C.more than D.data insufficient, cannot be predicted

D.all (a), (b) and (c)

Pressure drag does not depend upon the A.roughness of surface of the body. B.pressure of main flow only. C.length of the body in flow direction. D.all (a), (b) and (c)

A.1000 P'/S

Schedule number of a pipe, which is a measure of its wall thickness, is given by A.1000 P'/S B.100 P'/S C.1000 S/P' D.10000 P'/S

C.is zero at the centre and varies linearly with the radius

Shear stress in a fluid flowing in a round pipe A.varies parabolically across the cross-section. B.remains constant over the cross-section. C.is zero at the centre and varies linearly with the radius. D.is zero at the wall and increases linearly to the centre.

A.ML-1T-1

The dimension of dynamic viscosity is A.ML-1T-1 B.L2T-1 C.LT-2 D.ML-1T-2

D.0.44

The drag co-efficient for a bacterium moving in water at 1 mm/s, will be of the following order of magnitude (assume size of the bacterium to be 1 micron and kinematic viscosity of water to be 10-6m2/s). A.24000 B.24 C.0.24 D.0.44

B.Newtonion

The fluid in which the shearing stress within it is proportional to the velocity gradient across the sheared section, is called a __________ fluid. A.Bingham B.Newtonion C.perfect D.none of these

A.surface tension

The fluid property, due to which, mercury does not wet the glass is A.surface tension B.viscosity C.cohesion D.adhesion

B.as (velocity)2

The head loss in turbulent flow in a pipe varies A.as velocity B.as (velocity)2 C.inversely as the square of diameter D.inversely as the velocity

C.suction minus vapor pressure of the liquid at suction temperatur

The net positive suction head (NPSH) of a centrifugal pump is defined as the sum of the velocity head and the pressure head at the A.discharge. B.suction. C.suction minus vapor pressure of the liquid at suction temperature. D.discharge minus vapor pressure of the liquid at the discharge temperature.

D.having no motion of one fluid layer relative to the other.

The normal stress is the same in all directions at a point in a fluid, when the fluid is A.non-viscous. B.incompressible. C.both (a) and (b). D.having no motion of one fluid layer relative to the other.

D.all (a), (b) and (c)

The pitot static tube does not measure the __________ pressure. A.static B.total C.difference in static & dynamic D.all (a), (b) and (c)

D.2

The ratio of the depth of flow to the hydraulic radius for the most economical trapezoidal section, in open channel flow is A.0.5 B.1 C.1.5 D.2

A.0.5

The terminal velocity of a particle moving through a fluid varies as dpn. What is the value of n' for Newton's law regime ? A.0.5 B.1 C.1.5 D.3

B.inverse of the fluid viscosity.

The terminal velocity of a small sphere settling in a viscous fluid varies as the A.first power of its dimeter. B.inverse of the fluid viscosity. C.inverse square of the diameter. D.square of the difference in specific weights of solid & fluid.

A.logarithmic

The velocity profile for turbulent flow through a closed conduit is A.logarithmic B.parabolic C.hyperbolic D.linear

B.rapid pressure change due to a rapid change in the rate of flow.

Water hammer in a pipeline results from the A.bursting of pipelines due to closure by a valve. B.rapid pressure change due to a rapid change in the rate of flow. C.pressure increase due to closure of a valve resulting in decrease in rate of flow. D.none of these.

B.7 to 15

What is the normal range of exit cone angle of a venturimeter ? A.2 to 5 B.7 to 15 C.15 to 25 D.>25

A.jet pump

When the momentum of one fluid is used for moving another fluid, such a device is called a/an A.jet pump B.blower C.acid egg D.none of these

B.Mach number

Which of the following denotes the effect of compressibility in fluid flow ? A.Weber number B.Mach number C.Euler number D.Reynolds number

D.None of these

Which of the following is not a dimension-less parameter ? A.Euler number B.Specific gravity C.Fanning friction factor D.None of these

D.Weber number

Which of the following is not concerned with the fluid-particle interaction ? A.Drag co-efficient B.Froude number C.Galileo number D.Weber number

A.monotonically decreases.

With increasing flow rate, the hydraulic efficiency of a centrifugal pump A.monotonically decreases. B.decreases and then increases. C.remains constant. D.increases and then decreases.

B.Propeller

__________ pumps are axial flow pumps. A.Turbine B.Propeller C.Diffuser D.none of these


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