Sorry didnt explain myself very well, Its really a maths problem rather than an engineering one.
I am trying to do a cost comparison of different types of power generating plant. One standard way to do that is to find a known plant of a certain size at a certain time in a certain place and then convert it to the present time and the desired capacity and the desired location via a number of indices which are available in various textbooks and publications , with the formula from my first post.
In my case I am talking about power plant, but the same idea applies to chemical plant and indeed individual items of major equipment in such plants , and I am only talking about the capacity index , not the time or place.
For some one who is not a professional estimator in business like myself , The "known" values are hard to come by as they are usually the IP of large firms and consultants. What is publically available is often quoted in ($/kw ) or dollars per some other parameter for equipment of a certain size .
For example a industry guide may say;
for a theoretical plant of 380 MW , major equipment cost may be xx/MW, grid connection cost may be YY/ MW and Balance of plant may be ZZ/kw. exponents for each may be different.
In my case I have the "known figure" in $/MW and the out put in $/MW, I can convert the known figure to total dollars , do the calculation and then convert back again, but because I am trying to model a large number of case in a large excel spreadsheet , that introduces more chances of error and is a bit unwieldy. Something tells me there must be a simpler way but can't quite think of it.
See attached diagram , the right hand one is what I imagine the relationship between cost per unit and capacity must look like.
Is one the integral of the other or something like that?