If I remember my uni engineering/calculus maths class correctly, the third derivative of position is used in planning these sort of curves. The first derivative of postion (with respect to time) is velocity. The second derivative is acceleration (ie rate of change of velocity). And the third derivative is jerk (rate of change of acceleration). And 'jerk' has to be kept below a certain threshold for humans to find mov…
Also seen in the planning of curves in roads (where jerk corresponds to the rate at which a steering wheel must be turned) and railways. And this is also why the passengers jerk of a vehicle jerk backwards after it comes to a complete stop. Their muscles statically counter the relative forwards acceleration of their torsos during braking and require time to react to the acceleration suddenly going away. This effect c…
Why roller coaster loops aren’t circular anymore
41–50 of 110 posts
Re: Why roller coaster loops aren’t circular anymore
#42Re: Why roller coaster loops aren’t circular anymore
#43Re: Why roller coaster loops aren’t circular anymore
#44Earlier quoted context omitted.
Also seen in the planning of curves in roads (where jerk corresponds to the rate at which a steering wheel must be turned) and railways. And this is also why the passengers jerk of a vehicle jerk backwards after it comes to a complete stop. Their muscles statically counter the relative forwards acceleration of their torsos during braking and require time to react to the acceleration suddenly going away. This effect c…
> but few drivers or rapid transit systems seem to be aware I find that amazing. What the heck are drivers ed instructors doing? It's not just hard on the passengers, it's hard on the machinery. It's the same with the clutch. I've driven with enough people who fancy themselves as great shifters, but they jerk the hell out of the clutch every time, never attempting to match the shaft speed with the engine speed. If I…
And you can tell how somebody treats their car by examining how long the clutch lasts, if they drive a manual.
Re: Why roller coaster loops aren’t circular anymore
#45If I remember my uni engineering/calculus maths class correctly, the third derivative of position is used in planning these sort of curves. The first derivative of postion (with respect to time) is velocity. The second derivative is acceleration (ie rate of change of velocity). And the third derivative is jerk (rate of change of acceleration). And 'jerk' has to be kept below a certain threshold for humans to find mov…
Re: Why roller coaster loops aren’t circular anymore
#46If I remember my uni engineering/calculus maths class correctly, the third derivative of position is used in planning these sort of curves. The first derivative of postion (with respect to time) is velocity. The second derivative is acceleration (ie rate of change of velocity). And the third derivative is jerk (rate of change of acceleration). And 'jerk' has to be kept below a certain threshold for humans to find mov…
They call these constraints by G and a number.
G1 would be a positional constraint: the two surfaces meet each other at the same point
G2 tangential: same as G1, but the surfaces are tangential
G3: same as G2, but the curvature (radius^-1) of the surfaces is the same at the point where the two meet. This essentially means the curvature combs of the surfaces shall meet at the same position (G1)
G4: same as G3, only now the meeting curvature combs have to be tangential as well
G5: same as G4, only now the curvature combs of the curvature combs have to meet at the same position
And so on. The goal is to create smooth transitions between two separate mathematical surfaces that cannot be seen in the reflections in the sheet metal. E.g. if you think about the connection of straight sheet of metal (curvature: 0) and a cylindrical surface (curvature: 1/radius) the curvature will go from zero to some different value immidiately on the transation you will definitly see this as a hard corner on the reflection or when light falls onto the surface.Re: Why roller coaster loops aren’t circular anymore
#47If I remember my uni engineering/calculus maths class correctly, the third derivative of position is used in planning these sort of curves. The first derivative of postion (with respect to time) is velocity. The second derivative is acceleration (ie rate of change of velocity). And the third derivative is jerk (rate of change of acceleration). And 'jerk' has to be kept below a certain threshold for humans to find mov…
Also seen in the planning of curves in roads (where jerk corresponds to the rate at which a steering wheel must be turned) and railways. And this is also why the passengers jerk of a vehicle jerk backwards after it comes to a complete stop. Their muscles statically counter the relative forwards acceleration of their torsos during braking and require time to react to the acceleration suddenly going away. This effect c…
Is this why it seems to be mostly Americans that are into the idea of self-driving cars, because the standard of driving is so low?
Re: Why roller coaster loops aren’t circular anymore
#48Earlier quoted context omitted.
Also by the time you get to the apex it’s going slower than when it entered the loop.
I’m having trouble imagining a scenario where this is not the case.
An inverted loop, where the loop is lower than the track, and with a very long train, where the center of mass continues to decrease in height due to the part of the train not presently looping.
Re: Why roller coaster loops aren’t circular anymore
#49I remember the Corkscrew at Knotts as a kid, no longer exists. The Revolution at Magic Mountain arrived in the late 70s with the new parabolic shape and still running. (Southern California)
Re: Why roller coaster loops aren’t circular anymore
#50Earlier quoted context omitted.
If you're trading a horse for the car, a seatbelt might not be the first thing you'd think of. I don't think our views on danger have changed, it's just that any new technology requires a period of adjustment to it.
Our views have changed. We used to throw lawn darts, have fireworks, guns all over. Not even helmets on motorcycles. When I was a kid, we used to rid maybe 6 kids in the back of a pickup truck flat bed. That was normal . It would not only be illegal today, but probably considered very immoral. Hockey players didn't even wear helmets, not even the goalies (!). Nobody wore helmets when I grew up skiing, now almost ever…