Steve_B said:Sounds good.
Just wondering how you were standing on the pedal. You might get slightly different results depending upon how you shift your weight around while standing on the pedal? Did you notice this at all?
Sorry for chiming in late but I would also suggest checking it with another known weight just as a sanity check and to see if there are any scaling differences. So maybe get your friend to stand on the pedals while you hold the brake. Or your wife/g.f./partner/s.o./child. Someone who might stand on the pedals slightly differently and whose weight is different enough from yours is a good person to ask. See if you get the same results on a percentage basis.
I know it's a pain in the backside to do this again so I can understand blowing this off. I spend a large percentage of my professional life dealing with instrumentation in a laboratory so I have some idea of things that can go wrong.
Thanks for the advice. I did see small fluctuations in the torque value as I was balancing but they stabilised once I'd managed to get still.
I agree that using my bodyweight is a bit iffy (I'm also a lab scientist!!) but it seems to me that pretty much anything that would conceivably cause an error (leaning on anything, not having cranks dead level etc) would cause the PT torque value to be lower than expected, not higher. There's no way I am capable of generating greater than the calcluated torque for any length of time (I would need to be instantaneously accelerating upwards.)
Using a range of different weights seemed an obvious good idea but surely just using the same weight in different gear ratios has the same effect? The absolute torque values changed by a factor of x2 from the highest to lowest gear ratio so I've measured the torque/torsion coefficient over a decent range.
I can't help thinking it's kaput 🙁