That is not universally accurate. Even at the time, there were vehicles that were more efficient at higher speeds than 55mph. But those weren’t American designs, of course so they were of course ignored in favor of the general majority. And those vehicles that were more efficient at higher speeds, got screwed for simplicity.
Drag is not linear, it is proportional to the velocity squared.
However that is only one of the big factors. Vehicle shape and aerodynamics have a large effect on drag. This is one of the reasons for the flush door handles on some vehicles, lowered drag means increased efficiency. Then you also have the efficiency of the engine and power train at various speeds and power output.
That is not universally accurate. Even at the time, there were vehicles that were more efficient at higher speeds than 55mph. But those weren’t American designs, of course so they were of course ignored in favor of the general majority. And those vehicles that were more efficient at higher speeds, got screwed for simplicity.
I did wonder about that actually, questioned it.
It seems odd wind resistance would be higher at higher speeds and not linear to me as well. Idk why but it’s counterintuitive to me.
Drag is not linear, it is proportional to the velocity squared.
However that is only one of the big factors. Vehicle shape and aerodynamics have a large effect on drag. This is one of the reasons for the flush door handles on some vehicles, lowered drag means increased efficiency. Then you also have the efficiency of the engine and power train at various speeds and power output.