Andy6
Member
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- 152
- Location
- Liverpool
Ok so this is a bit out there...
I've been wondering about the feasibility of adding an electirc motor to a turbo to spool it at lower RPM's to eliminate turbo lag in roughly the same way as the F1 cars do thesedays. So I thought I'd see what people on here thought about it and what would need to be considered technically to achieve, if it's even possible.
Here are my thoughts.
F1 engines and other "hybrid" systems uncouple the compressor and turbine so they can spin at different RPM's, during energy recovery and spooling the turbo. In terms of simplicity could a motor simply be attached to one side? If so would this create some sort of vacuum effect on the hot side during, a pressure difference either side of the exhaust valves probably isn't ideal.
Control side: Initially I though a simple button to spin the motor might suffice, making the circuit relatively simple. However I think it might create overboosting problems. Adding in some sort of RPM limit on the motor might solve this, but is boost pressure fixed to compressor speeds?
Other than this I guess an automated system is the next option. In my mind this would involve taking Engine RPM's and throttle postion to control the electric motor speed and therefore boost pressure, steadily reducing as exhaust gas pressures increase. Im guessing this would need a new ECU to add the control to the electric motor by altering voltage to it.
Any ideas?!
I've been wondering about the feasibility of adding an electirc motor to a turbo to spool it at lower RPM's to eliminate turbo lag in roughly the same way as the F1 cars do thesedays. So I thought I'd see what people on here thought about it and what would need to be considered technically to achieve, if it's even possible.
Here are my thoughts.
F1 engines and other "hybrid" systems uncouple the compressor and turbine so they can spin at different RPM's, during energy recovery and spooling the turbo. In terms of simplicity could a motor simply be attached to one side? If so would this create some sort of vacuum effect on the hot side during, a pressure difference either side of the exhaust valves probably isn't ideal.
Control side: Initially I though a simple button to spin the motor might suffice, making the circuit relatively simple. However I think it might create overboosting problems. Adding in some sort of RPM limit on the motor might solve this, but is boost pressure fixed to compressor speeds?
Other than this I guess an automated system is the next option. In my mind this would involve taking Engine RPM's and throttle postion to control the electric motor speed and therefore boost pressure, steadily reducing as exhaust gas pressures increase. Im guessing this would need a new ECU to add the control to the electric motor by altering voltage to it.
Any ideas?!