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this journal or whatever you're quoting from looks interesting but honestly the .xyz in the address makes me leery of going there.
No. If you look carefully, the average torque is zero. Reducing the mass will only reduce the peak values (both positive and negative). Once again, whatever it takes, it gives back; and it takes only one revolution to do so.novaguy said:Can we agree that lower piston mass will reduce the torque due to inertia?
First, your source considers the entire cycle, i.e 2 revolutions, but you consider only half a revolution. Try redoing your math over the entire cycle and calculate the average torque over the cycle. You will see that nothing changed because the average inertial torque is zero.novaguy said:And that the total torque generated (not including resistive torques for simplicity) is the sum of these torques?
novaguy said:which means the pistons can accelerate and decelerate more quickly. This allows for a more rapid combustion process and an improvement in the MEP.
This is complete nonsense. We already determined that the piston acceleration depends only on the RPM and stroke of the engine; the average over a cycle always being zero (at constant RPM).novaguy said:Combustion Duration: A reduction in piston mass can also decrease the combustion duration. As combustion duration is reduced, the pressure inside the cylinder increases, resulting in an improvement in the MEP.
What is said there is about lowering friction force, and vibrations which can all lead to more power. You already mentioned the friction in the OP:novaguy said:I also just asked, "studies done on piston mass". Results? INCREASES IN POWER.
And the energy losses due to vibrations were also already mentioned:novaguy said:and with a much smaller skirt area, less friction too.
Baluncore said:Main bearing friction losses will therefore increase. The unbalanced forces will radiate vibration energy from the main bearings, through the engine mounts, to the vehicle.
(The answer should be "no".)novaguy said:will this lighter piston result in a small power increase as less work done by reciprocating the piston?
You conveniently left out the conclusion by the NREL study showing piston mass to increase MEP.jack action said:What is said there is about lowering friction force, and vibrations which can all lead to more power. You already mentioned the friction in the OP:
jack action said:novaguy said:
will this lighter piston result in a small power increase as less work done by reciprocating the piston
There are at least 4 studies that say yes.jack action said:(The answer should be "no".)
I don't think I cherry picked anything. So far, there is mostly conjecture on whether or not reciprocating inertia increases power. Just people stating off the top of their heads what they think.Baluncore said:The more you cherry-pick to make your original belief seem correct, the more opposition you will receive from others, who must refuse your unconditional general statements.
Under what conditions do you believe those general statements to be true?novaguy said:Work done at a faster rate equals more power.
Work can be done faster with lighter reciprocating components.
You do understand that these words were assembled together by a Chatbot that surely hasn't reviewed a study (if it exists) and then share its conclusions with you?novaguy said:"A study by the National Renewable Energy Laboratory (NREL) found that reducing the mass of the pistons in a spark-ignition engine improved the engine's thermal efficiency by up to 3%. This was attributed to the reduction in the reciprocating inertia of the pistons, which in turn allowed for a more rapid acceleration of the engine and an improvement in the mean effective pressure."
jack action said:Reducing mass may reduce the normal forces between the components, leading to fewer friction losses. That is the only way you can explore the higher efficiency of your engine.