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Chapter 2 Systems of BWR Nuclear Power Plants

feed water pump

Figure 2.11,2 Outline of the auxiliary steam system

condition, and the safety graded instruments do not use a pneumatic method. Therefore there is no problem even if IA supply is lost

The SA supply unit is used as a common air source including those for the filter backwash and for mixing of liquid wastes in tanks.

The ADS actuating valve gas supply system supplies nitrogen from a gas cylinder or compressor. An outline of the compressed air supply system is shown in Figure 2.11.4, and examples of compressed air uses or users are given in Table 2.11.3.

  1. Design philosophy

  1. The compressed air supply system can supply gases with quantity and pressure satisfying the required conditions of each use or user.

  2. The compressed air is clean air pressurized by oil-less compressors, and particularly the IA unit can supply dry and clean air through drying and filtering processes.

  3. The IA unit has an air reservoir which can supply the required compressed air to instrument equipment for 10 minutes in the case of compressor trouble.

  4. The IA unit is designed to have a tie line with the compressor of the SA unit for backup in

case of its own compressor trouble.

  1. The IA system can be operated by the emergency diesel power supply, when the normal power supply is lost.

  2. The equipment using compressed air inside the primary containment is normally supplied with nitrogen gas from nitrogen gas generation equipment of inert gas supply unit

  1. Key equipment

The IA unit mainly consists of the air compressor, after cooler, air reservoir, filter and dryer.

The SA unit mainly consists of the air compressor, after cooler and ah' reservoir.

The ADS actuating valve gas supply unit consists of the nitrogen gas cylinder or the compressor for pressurizing sources.

  1. Heating, Ventilating and Air Conditioning (hvac) System

The HVAC system can supply fresh air in the building, and can control the room temperature adequately by air conditioning. The HVAC system is designed to prevent contamination from spreading to clean areas by controlling according to air flow directions in buildings.

2- 113

NSRA, Japan

Table 2.11.2 Examples of auxiliary steam uses or users

Season

Plant status

Approximate use (ton/y)

Main uses or users

Remarks

Winter

Plant startup and shutdown

Max. 20 -40

•Turbine gland seal

•SJAE operation for startup •HVAC system (heating only)

• Condensate water storage tank heating

Steam for radioactive waste treatment systems is usually stopped, because plant startup and shutdown periods are short.

Normal operation

Max. 20-30

•HVAC (heating only)

  • Radioactive waste treatment systems heating

  • Condensate water storage tank heating

Plant inspection

Max. 20- 30

•HVAC system (heating only)

  • Radioactive waste treatment systems heating

  • Condensate water storage tank heating

Summer

Plant startup and shutdown

Max. 10-20

•Turbine gland seal

• SJAE operation for start-up

Steam for radioactive waste treatment systems can be added, since they do not need the steam

Normal operation

Max. 10-15

■ Radioactive waste treatment systems heating

Plant inspection

Max. 10-15

• Radioactive waste treatment systems heating