crispyduck,
FPR's work like this:
Fuel pump operates at a given duty cycle. I believe the stock WRX is something like 33%, 66%, or 99% (i.e. 100%). Could be wrong, but I think I saw that in my logs. I recall on my MR2 that it had two speeds - slower and faster.
At a given pump duty cycle, it is chugging some fuel down the fuel rail.
The gas goes to the fuel injectors, and it goes to the fuel pressure regulator.
The fuel pressure regulator can be thought of as a bleeder valve.. it allows some amount of fuel to go back to the gas tank by way of a return line.
It is like a ball & spring boost controller - it tries to maintain some particular pressure at the entrance to the fuel injectors, so it allows however much fuel back into the gas tank to maintain that pressure. If the fuel pump were to speed up (higher duty cycle) for a given amount of fuel needed, the FPR would allow however much additional fuel out its return line (to the gas tank) to keep the fuel pressure at its target.
However, it's a bit trickier. The amount of fuel going through the injectors is due to the *difference* between the pressure on both sides of it. So if the fuel rail has 46psi and the intake port of the head has 0psi, then you have 46psi of pressure differential. This is what determines how much fuel sprays through the nozzle.
As you can see, when you hit 15psi of boost in the intake port you would only have 31psi of pressure differential. This is why FPR's in a turbo application are boost referenced.. they have a connection to the intake manifold (or somewhere), and this causes the same increase in the fuel rail.
So if you have 46psi regulated in the fuel rail from the FPR with 0psi in the intake ports, it will automatically (by simple mechanics, no fancy electronics) increase to 61psi in the fuel rail for 15psi in the intake port.
Note that the fuel pump doesn't know a thing about the intake port pressure. It sees the pressure in the fuel rail, 61psi. Any aftermarket fuel pump will have a graph that shows how much volume it can flow at a given pressure. I pump that can flow tons of cc/minute at 40psi may be able to barely flow any cc/minute at 90psi. This may very well not be an issue in many cases, but definitely can be in the case where you are bumping up pressure to simulate larger injectors.
HTH!
