TRAVIS CANNING
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power engineering 3b2 Quiz sobre 4.1 Steam Turbine Principles and Design, criado por TRAVIS CANNING em 27-02-2016.

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TRAVIS CANNING
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4.1 Steam Turbine Principles and Design

Questão 1 de 12

1

In a/an ______ turbine there is a difference in pressure across the _______ blades. Therefore the steam will tend to _____ around the periphery of the blades instead of passing through them.
1. impulse
2. moving
3. reaction
4. drip
5. stationary
6. Leak

Selecione uma das seguintes:

  • 1,2,4

  • 3,5,6

  • 3,2,6

  • 1,5,4

  • 1,5,6

Explicação

Questão 2 de 12

1

A back-pressure turbine with exhaust steam going to an old boiler header that is supplying steam to an old lower pressure turbine is called a:

Selecione uma das seguintes:

  • condensing-bleeder turbine

  • cross compound turbine

  • condensing turbine

  • Topping turbine

  • Mixed pressure turbine

Explicação

Questão 3 de 12

1

A back-pressure turbine with exhaust steam going to an old boiler header that is supplying steam to an old lower pressure turbine is called a :

Selecione uma das seguintes:

  • condensing-bleeder turbine

  • cross compound turbine

  • condensing turbine

  • topping turbine

  • mixed pressure turbine

Explicação

Questão 4 de 12

1

In a condensing-bleeder turbine up to 2 percent of the total steam flow may be bled off. What is the bleed-steam used for?

Selecione uma das seguintes:

  • Building heating

  • Relieving pressure

  • Atomization of the fuel

  • To be reheated in boiler

  • Feed-water heating

Explicação

Questão 5 de 12

1

In pressure compound steam turbines
1. The expansion of steam from boiler pressure to exhaust pressure is carried out in a number of steps or stages.
2. Each stage has a set of nozzles and a row of blades.
3. All of the velocity available is developed in one set of nozzles.
4. Rows of moving blades are separated by partitions or diaphragms into which nozzles have been installed.

Selecione uma das seguintes:

  • 1,2,3

  • 2,3,4

  • 1,3,4

  • 1,2,4

  • 3,4

Explicação

Questão 6 de 12

1

The pressure at the outlet from the moving blades is the same as the pressure at the inlet to the moving blades in a/an ________ turbine

Selecione uma das seguintes:

  • Topping

  • Reaction

  • Back pressure

  • Impulse

  • Extraction

Explicação

Questão 7 de 12

1

When the exit pressure of a steam turbine nozzle is less than ________ times the inlet pressure then a _______ nozzle will be used.

Selecione uma das seguintes:

  • 0.757, convergent

  • 0.577, convergent-divergent

  • 0.757, convergent-divergent

  • 0.757, convergents

  • 0.577, convergent or convergent-divergent

Explicação

Questão 8 de 12

1

A thrust adjusting gear

Selecione uma das seguintes:

  • is found on impulse turbines

  • adjust the thrust generated by the turbine

  • positions the turbine rotor axially

  • compensates for steam pressure variations

  • is adjusted to provide minimum clearances on start up

Explicação

Questão 9 de 12

1

In an impulse steam turbine nozzle the following events take place.
1. Steam pressure decreases.
2. Enthalpy of the steam decreases.
3. Velocity of the steam increases.
4. Volume of the steam increases.

Selecione uma das seguintes:

  • 1,2,4

  • 1,3,4

  • 2,3,4

  • 1,2,3

  • 1,2,3,4

Explicação

Questão 10 de 12

1

In an impulse steam turbine nozzle the following events take place:
1. steam pressure decreases.
2. Enthalpy of the steam decreases
3. Velocity of the steam increases
4. volume of the steam increases

Selecione uma das seguintes:

  • 1,2,4

  • 1,3,4

  • 2,3,4

  • 1,2,3

  • 1,2,3,4

Explicação

Questão 11 de 12

1

When disc rotors are assembled, the discs are heated until they are easily slid along the shaft and then located in the correct position on the shaft and shaft key. A small clearance between the discs prevents:

Selecione uma das seguintes:

  • Noise

  • Slippage

  • Thermal stress in the shaft

  • Acceleration

  • Vibration

Explicação

Questão 12 de 12

1

Proper expansion of steam through a turbine nozzle depends on what?
1. Operation at the design pressure
2. Operation at the design rotational speed
3. Operation at the design temperature
4. Selection of the proper nozzle material

Selecione uma das seguintes:

  • 1,2

  • 2,3

  • 3,4

  • 1,3

  • 2,4

Explicação