I am not sure which is the best part of the forum to post this in, so, moderator, if you think it is better suited elsewhere please relocate the thread!
I am designing a bike, from scratch, and I would like to do it scientifically. I also want to use my bike design, complete with as much science as possible, as an entry method into a mechanical engineering course. The problem is I have not studied, or used, even basic physics equations for ages and I have not much time before I will have to submit the project to the admissions tutor, so I have not enough time to learn in the more orthodox way!
Please help me with the following basic physics problems:
Inclined Plane.
I know that the equation to calculate the force required to move up an inclined plane (ignoring friction, etc.) is:
Weight X the sin of the angle of the slope
What I need to know is how to calculate the force needed to accelerate up an inclined plane at a given rate; I do not know how to incorporate acceleration into the above equation. I also need to know how to calculate the force needed to move an object up the inclined plane at any given speed, I.E (ignoring friction, air drag, etc.) how much force is needed to ride a bike up an inclined plane at 20mph and how much force is required at 15mph, for example?
Rolling Resistance.
I have found a formula for this but, as with the inclined plane problem, I do not know how to factor in speed and acceleration into the equation.
Force = w X Crr
The above equation can be used to determine the force needed to overcome rolling resistance. ‘w’ is the weight of the bike and ‘Crr’ is the coefficient of rolling resistance for the bike.
So if any one knows how to incorporate acceleration and speed into the above equation (or indeed provide equations unique to those problems) to calculate the force required, please post them here.
Aerodynamic Drag.
I know that I need to estimate a coefficient of aerodynamic drag that is individual to the particular bike I am trying to workout the forces for. I also need to estimate the surface area of the front of the bike. Beyond that I do not know what the formula would be to work out acceleration through air and the force needed to sustain a given constant speed through air. So any help on these problems will be appreciated.
Bearing Friction.
Another problem I have is to find an equation or equations that will help me calculate power lost in wheel bearings. Again acceleration and a constant speed need to be accounted for.
If you are able to help me on one or more of these problems please post here and I would be very grateful.