I know that an accepted method to determine oci is hours used but that tells you little about the severity of service which might have an effect on the oil. So TeeDub has a formula for auto oci's based on gallons of gas consumed and I wonder if that would be a good method for the home lawn mower. Every time you fill up the 5-gallon gas can you change the oil. There are times when the grass is high and thick and I can use 2 or 3 times the amount of gas in the same time period, so a formula like this would work. The formula below is the general idea and would have to be modified but TeeDub applied a good idea to an actual formula.
TeeDub's formula
OCI(miles) = (C*)(aver.mpg)(sump-qts)(cubic inches/Hp**)
Where C* is an empirically derived constant, that depends on both the quality of the basestock and the robustness of the add pack.
** For turbo diesels, substitute ft-lbs of torque for Hp, as this is a better measure of turbodiesel output. If you were to use Hp, you'd over predict a reasonable drain interval.
As for the C* values, most of the work I've done has been with Amsoil, where I back fitted a series of oil analysis results and varied the C* until I was getting reasonable OCI's for engines of varying size and output. However as a first cut, I'd say a C* of 50 for a petroleum oil and a C* of 80 for an average quality, off the shelf synlube should be about right. The top tier, PAO/Ester synthetics (Amsoil, Mobil 1/EP,GC,Redline) are assigned a C* of 125. The Series 2000/3000 oils probably rate a C* of 150, i.e. they do last a bit longer than the regular Amsoil 5w30 or 10w30.
As a final note, the units in the above formula do not cancel to yield miles when you multiply them through. So just ignore that and use the numerical data and forget about the units. I know this bother some engineers , and I suppose you could assign some funky units to the C* value to get everything to come out right, but I haven't done that.
TeeDub's formula
OCI(miles) = (C*)(aver.mpg)(sump-qts)(cubic inches/Hp**)
Where C* is an empirically derived constant, that depends on both the quality of the basestock and the robustness of the add pack.
** For turbo diesels, substitute ft-lbs of torque for Hp, as this is a better measure of turbodiesel output. If you were to use Hp, you'd over predict a reasonable drain interval.
As for the C* values, most of the work I've done has been with Amsoil, where I back fitted a series of oil analysis results and varied the C* until I was getting reasonable OCI's for engines of varying size and output. However as a first cut, I'd say a C* of 50 for a petroleum oil and a C* of 80 for an average quality, off the shelf synlube should be about right. The top tier, PAO/Ester synthetics (Amsoil, Mobil 1/EP,GC,Redline) are assigned a C* of 125. The Series 2000/3000 oils probably rate a C* of 150, i.e. they do last a bit longer than the regular Amsoil 5w30 or 10w30.
As a final note, the units in the above formula do not cancel to yield miles when you multiply them through. So just ignore that and use the numerical data and forget about the units. I know this bother some engineers , and I suppose you could assign some funky units to the C* value to get everything to come out right, but I haven't done that.