To assist in calculating compression ratio:
Compression ratio is defined as the volume above the piston at BDC divided by the volume above the piston at TDC.
I have played around with many of the online compression ratio calculators and I don’t feel totally comfortable using them, especially when they don’t take head gasket or deck height volumes into account. Does it matter in the final outcome of the engine? I don’t know, but it does change the numbers, so I factor that in. Some compression ratio calculators take the top land of the pistons into account. I think that is much ado about nothing, I just don’t see that slight volume contributing significantly to the combustion process.
For me, it is easier to just convert the bore and stroke dimensions to centimeters so that all of my numbers are in cubic centimeters. To convert inches to centimeters, multiply inches by 2.54.
Piston Dish or Piston Dome will either be added (dish +) or subtracted (dome -) because a dish adds to the combustion chamber volume and a dome displaces combustion chamber volume.
Volume, Deck Height is a cylinder volume that is created by the distance the piston is below the block deck while at TDC. Some engines, like the Mopar LA 340 will have a positive deck height where the piston top is actually above the block deck surface. Most engines have a deck height below the block deck.
^2 = Quantity Squared
π ~ 3.1416
R = Radius = 1/2 Diameter
Area of a Circle = πR^2
Volume of a Cylinder = Area of a Circle * Stroke
The numbers will look something like the following for a .030 over 454:
Bore = 4.280 inches * 2.54 = 10.8712 cm
Stroke = 4.00 inches * 2.54 = 10.16 cm
Volume, Cylinder = Area, Bore * Stroke
Volume, Cylinder + Volume, Deck Height + Volume, Gasket + Volume, Cylinder Head +/- Volume Dish/Dome
---------------------------------------------------------------------------------------------------------------
Volume, Deck Height + Volume, Gasket + Volume, Cylinder Head +/- Volume Dish/Dome
Area, Bore = [(10.8712 cm / 2)^2] * 3.1416
Area, Bore = (5.4356^2) * 3.1416
Area, Bore = 29.54574736 * 3.1416
Area, Bore = 92.8207 sq/cm
Volume, Cylinder = 92.8207 sq/cm * 10.16 cm
Volume, Cylinder = 943.0583cc
Volume, Deck Height = 0 (zero deck)
Volume, Gasket = 9.700cc
Volume, Cylinder Head = 109cc
Volume Dish/Dome = 0cc (true flat top)
943.0583 + 0 + 9.700 + 109 + 0
--------------------------------------- =
0 + 9.700 + 109 + 0
1061.7583
------------- = 8.9449:1 CR
118.7
Some other features that influence final compression ratio:
Dished vs. flat valves as well as how many valve jobs the heads have had. Sinking the valves into the seats not only reduces compression ratio, it also reduces port flow as it affects the short side radius of the port.

Any notches in the block for valve clearance or unshrouding.
