Uses of compressed air
- Starting of main & auxiliary engines
- Boiler soot blowing
- Service air
- Whistle air
- Pneumatic tools
- Life boat, pilot ladder
- Instrumentation & control
Installation Requirements
CompressorsMinimum 2 or more compressors
Sufficient capacity to charge air receivers within 1 hour from atm. to max. pressure to provide
- 6 starts for non reversible engine
- 12 starts for reversible engine
1 emergency air compressor & receiver for dead ship condition
At least 2 air receivers with sufficient capacity without replenishment and able to provide
- 6 starts for non reversible engine
- 12 starts for reversible engine
Pressure Relief devices
Relief v/v to be fitted after each stage of compression
Relief v/v to be fitted on the air receiver
Relief v/v or bursting disc to be fitted on inter & after coolers
Air Temperature
Limited to 93 C to prevent explosion
Fusible plug or high temp cut out provided as safety measure
Cylinders, cylinder covers, inter & after coolers are tested by hydraulic pressure to twice their working pressure.
Casing of intercooler and after cooler is hydraulically tested to 1.5 times the cooling water pressure
Multistaging & Intercooling
Advantages:
Compression work is reduced
Vol efficiency and hence compressor capacity is increased
It approximates isothermal compression
Vol of air delivered is reduced; as a result reduced size of cylinder, piston and delivery pipes is required
Reduced air delivery temp gives less thermal &mechanical loading and better lubrication of piston & cylinder
Due to less temp, suc & del valves remain clean
Facilitates moisture separation
Use of intercooler allows smaller receiver
Clearance Volume
To provide for thermal expansion and prevent the piston from striking cylinder cover, a small clearance, called bumping clearance is maintained between cylinder cover & piston .
Bumping clearance must be as small as possible
High bumping clearance reduces vol effn. of compressor
Reduces compressor capacity & increases disch air temp.
Bumping clearance is effected by bearing wear & gasket thickness
Low bumping clearance can cause mechanical damage
Bumping clearance must be checked after overhauling
Clearance volume is about 6% of swept volume
Clearance volume - gaskets , bearing wear down
Valves – dirty, leaky, spring tension
Leakage past piston rings
Insufficient cooling water due to dirty coolers
High cooling water temp.
High air inlet temp.
Throttling of air intake due to
Dirty intake filter
Insufficient suction v/v lift
Strong suction v/v spring
Remove contaminant to prevent
abrasive wear of piston rings, valves
deposit on valves casing source of ignition
Reduction in suction pressure
Increase in compression ratio
Increase in discharge temperature may cause coke deposit
Less air flow and danger of overheating coke deposits
In extreme case disch. temp.may exceed auto ignition temp of LO, resulting in an explosion
Low inertia automatic valves which operate on low diff pressure .
Material used for Valve seat – 0.4% carbon steel hardened & polished surface Valve plate – Nickel or stainless steel hardened & polished Spring – tempered hardened steel
Usually of same type, only differences are spring load and the valve lift
Excessive lift causes impact & v/v breakage
Late closing of v/v affects volumetric efficiency
Coke deposits make v/vs leaky & sticky causing overheating
reduce vol. efficiency
Trunk type piston is used in single acting compressor
Tandem piston is used in multistage compact design
Aluminium alloy material is used for good friction properties high strength with low coeff. of thermal expansion .
Piston rings material is alloyed cast iron
HP piston rings are made thicker
Crankshaft
Unloader
- throttling of suction
speed variation
by-pass discharge to suction
depression to hold suction v/v plates on their seats
Air Receiver
Size depends on engine requirements
Should have sufficient capacity to give
-
12 consecutive starts for reversible engine
- 6 consecutive starts for non reversible engine
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ReplyDeleteair compressors
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