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Omega A (1986-1993) Omega B (1993-1999) Omega B2 (1999-2003)
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  • Checking the compression in the engine cylinders

Checking the compression in the engine cylinders (Opel Omega B)

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The results of the compression test in the engine cylinders allow us to judge the condition of a group of parts in the upper part of the engine (pistons, rings, valves and cylinder head gaskets). Namely, a decrease in compression may be due to a leak in the combustion chambers due to wear of the piston rings, damage to the valve heads and seats, or burnout of the cylinder head gasket. Warning! To obtain accurate test results, the engine must be warmed up to normal temperature and the battery fully charged.


1. Start by cleaning the areas around the spark plugs using compressed air (if you don't have a compressor, blow out the areas with a car or even a bicycle pump). This is necessary to prevent dirt from getting into the cylinders when measuring compression.

2. Remove the spark plugs.

3. Open the throttle valve fully and secure it in this position.

4. Disconnect the central high-voltage wire from the ignition distributor cap, connect it to ground on the cylinder block. For reliability, connect to ground using a special short-circuiting piece of wire with alligator-type clamps on both ends. It also does not hurt to remove the fuse of the electronic fuel injection system on the mounting block, which will ensure complete shutdown of the electric fuel pump when measuring compression.

5. Insert the compression gauge into the spark plug hole.

6. Turn on the starter and turn the crankshaft a few revolutions, monitoring the readings of the compression gauge. On a serviceable engine, the pressure should increase quickly. Low pressure after the first stroke of the piston and a slow increase during subsequent compression strokes indicates wear of the piston rings. If the pressure is low after the first stroke of the piston and does not increase during subsequent compression strokes, then the cause is a leak in the valves or a leaky cylinder head gasket (the cause may also be the formation of cracks in the head). Reduced compression can also be caused by carbon deposits on the valve heads. Record the highest compression reading.



7. Repeat the measurement procedure for the remaining cylinders and compare the results with the standard data.

8. Inject a little engine oil into each cylinder through the spark plug hole (about three full syringe oilers), then repeat the tests.

9. If the compression increases after adding oil, then we can make a clear conclusion that the piston rings are worn out. If the compression increases slightly, then the leak occurs through the valves or the cylinder head gasket. Leakage through the valves can be caused by burnt-out valve seats and/or chamfers, as well as deformation of the valve stems or the formation of cracks on them.

10. If the compression is equally low only in two adjacent cylinders, then the most likely cause is a burnt gasket between these cylinders. Confirmation of this conclusion will be the appearance of traces of coolant in the combustion chambers or in the crankcase of the cylinder block.

11. If the compression reading in one cylinder is 20 percent lower than in the other cylinders and the engine idles unevenly, the cause may be wear on the camshaft cam that controls the exhaust valve.

12. If the compression value exceeds the norm, the combustion chamber is covered with carbon deposits. In this case, the cylinder head must be removed and the carbon removed.

13. If the compression in all cylinders is low or varies greatly between cylinders, then it is necessary to conduct combustion chamber leak tests, for which you should contact a specialized workshop. As a result of the tests, leak locations should be accurately determined and a quantitative characteristic of the leak should be given.


This article is available at russian, bulgarian, belarusian, ukrainian, serbian, croatian, romanian, polish, slovak, hungarian
Checking the article: Fedorova Varvara

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Previous articles
Opel Omega B: Repair of gasoline engines
Next articles

Engine diagnostics using a vacuum gauge
Engine overhaul
Compression check
Technical specifications
Engine Overhaul — Alternatives
Engine accessories
Dismantling the power unit — methods and safety precautions
Removal and installation the engine
Engine overhaul
Cylinder head and valves


See similar ones from other Opel car manuals:
▶ Checking the compression pressure in the cylinders and… Opel Corsa B (1993-2000)
▶ Checking the compression in the engine cylinders Opel Zafira A (1999-2005, petrol)
▶ Checking the compression pressure in the cylinders Opel Astra H (2004-2009)
▶ Checking the compression in the cylinders Opel Insignia A (2008-2017)
▶ Checking the compression in the cylinders Opel Kadett D (1979-1984)
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Omega B2 (1999-2003) 
  • General information
  • User manual
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  • Petrol 4-cylinder
  • Petrol 6-cylinder
  • Engine overhaul
  • Diesel engines 2.0 l
  • Diesel engines 2.5 l
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  • Main gear and shafts
  • Chassis
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  • Body elements
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  • Equipment and devices
  • Electrical circuits
Omega B (1993-1999) 
  • General information
  • User manual
  • Tips for the car owner
  • Maintenance (gasoline)
  • Maintenance (diesel)
  • Power unit
  • Petrol engine SOHC 2.0 l
  • Petrol engine DOHC 2.0 l
  • Petrol engines 2.5 and 3.0 l
  • Repair of gasoline engines
  • Diesel engine 2.0 l
  • Diesel engine repair 2.0 l
  • Diesel engine 2.5 l
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  • Power system (petrol)
  • Emission reduction
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  • Automatic gearbox
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  • Steering
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  • Exterior
  • Interior
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  • Equipment and devices
  • Wiring diagrams (early)
  • Wiring diagrams (late)
Omega A (1986-1993) 
  • General information
  • User manual
  • Maintenance
  • Changes and additions
  • Troubleshooting
  • Power unit
  • Gasoline engines
  • Diesel engines
  • Cooling system
  • Fuel system (gasoline)
  • Fuel system (diesel)
  • Ignition system
  • Transmission
  • Clutch
  • Mechanical gearbox
  • Automatic gearbox
  • Cardan shaft
  • Drive shafts
  • Chassis
  • Brake system
  • Car suspension
  • Steering
  • Body
  • Exterior
  • Interior
  • Electrical equipment
  • Power devices
  • Lighting and appliances
  • Electrical circuits
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