Empty Acela weighs 624 American tons; we'll guess that due to rotational inertia its effective inertial tonnage is 650. Assuming all that:
Coasting on level track-- start at 150 mph
100 mph reached in 5.18 minutes 10.58 miles
25 mph in 26.87 minutes 30.07 miles
0 mph in 45.88 minutes 33.66 miles
A lot further than 2 miles.To settle an argument, how far would a loaded eight coach train doing 125mph on level track roll freely if the traction were cut off? I'm guessing about 2 miles.
It depends on the rolling resistance of the stock in question, but probably more on the order of 10 or 20 miles. You'd have to engage noticeable braking to stop from 125mph in 2 miles (an emergency stop can be done in around 1 mile), so if you're rolling there's no way you'd stop that quickly.To settle an argument, how far would a loaded eight coach train doing 125mph on level track roll freely if the traction were cut off? I'm guessing about 2 miles.
I think this is as good an answer as the OP can reasonably expect. If a rolling train stopped in 2 miles on level track, the power requirements to run at useful speeds would make rail transport impossible.It depends on the rolling resistance of the stock in question, but probably more on the order of 10 or 20 miles.
Wow, that's impressive.probably more on the order of 10 or 20 miles
Yes, I have heard of that one. It was an unbraked PW department wagon that broke away from a battery loco train somewhere near Archway, which is is on a northward rising gradient. Fortunately there were no service trains around at the early hour. Must have been spectacular going through the pointwork at Camden Town.on the Underground some years ago when a train of some sort ran away somewhere on the Northern line and it ran southbound on the ruling down gradient until getting to the bottom of the slope around Warren St and then up towards Goodge St (locations approximate). It them acted like a yo-yo
If you mean the Friday 13 August 2010 Northern Line incident, it was a a self-propelled three-car diesel powered on-track grinding machine weighing about 37 tonnes. It became defective shortly before 07.00 hrs between Highgate and Archway on the southbound. To enable removal, it was attached to a train of 1996 stock, using an emergency coupling device. The braking system of the grinding unit was de-activated to allow it to be towed. The combined trains then set out to run wrong-line to East Finchley. After passing through Highgate, an emergency brake application was triggered on the 1996 train and the coupling device fractured. The grinding unit first collided with the rear of the towing train and then began to run back southwards. The crew jumped out at Highgate. The unbraked and unmanned grinder took 16 minutes to roll about 4 miles to Warren Street, where the gradient change made it stop and roll back a short distance before coming to a stand. There were service trains about. Before the coupling broke, passenger carrying services had started to run from both Archway and Edgware. Some of these trains were directly in front of the runaway RGU. The operator of a train standing at Archway was ordered to start immediately, and when it got to Tufnell Park the operator was ordered to leave without opening the doors, to drive quickly, and omit station stops (as were all trains on the Charing Cross branch). At one point this train was only 46 seconds ahead of the runaway.It was an unbraked PW department wagon that broke away from a battery loco train somewhere near Archway, which is is on a northward rising gradient. Fortunately there were no service trains around at the early hour.
Here's the report: https://www.gov.uk/raib-reports/runaway-of-an-engineering-train-from-highgate-13-august-2010If you mean the August 2010 Northern Line incident, it was a a self-propelled three-car diesel powered on-track grinding machine weighing about 37 tonnes, which had become defective between Highgate and Archway on the southbound. Shortly before 07.00 hrs on Friday 13th August 2010. It was coupled to a train of 1996 stock, using an emergency coupling device. The braking system of the grinding unit was de-activated to allow it to be towed. The combined trains then set out to run wrong-line to East Finchley. After passing through Highgate, the coupling device fractured and the grinding unit began to run back southwards. The crew jumped out at Highgate. Due to the gradient, the unbraked and unmanned grinder took 16 minutes to run about 4 miles to Warren Street, where the gradient change made it stop and roll back a short distance before coming to a stand. There were service trains about. Before the coupling broke, passenger carrying services had started to run from both Archway and Edgware. Some of these trains were directly in front of the runaway RGU. The operator of a train standing at Archway was ordered to start immediately, and when it got to Tufnell Park the operator was ordered to leave without opening the doors, to drive quickly, and omit station stops (as were all trains on the Charing Cross branch). At one point this train was only 46 seconds ahead of the runaway.
That happened more recently too: https://www.gov.uk/raib-reports/locomotive-runaway-near-east-didsburyIn one of Adrian Vaughan's books he describes an incident where some wagons broke off the back of a goods train on the then Farringdon branch. There was quite a dip in the line and the wagons yo-yo-ed a few times time. I guess there must have been a brake van in that portion, but perhaps its brakes were not that good, or the guard was enjoying it![]()
The brakes had been set up wrongly for "top and tail" working, so that when its on-board reservoir was exhausted the locomotive was unbraked. It then separated when a coupling broke.On Sunday 27 August 2006 an unmanned locomotive became uncoupled from the rear of a freight train as it approached Heald Green station, between Manchester Piccadilly and Manchester Airport. The locomotive then ran back northwards in the direction the train had come from for around 3 miles, and through a worksite at East Didsbury station. The locomotive then paused momentarily at Burnage station, before returning back southwards because of the gradient and through the worksite again. The train was brought to a stop by a combination of the gradient and workers wedging a wooden post in front of one of the locomotive’s wheels.
It would be a lot more than 2 miles for sure.To settle an argument, how far would a loaded eight coach train doing 125mph on level track roll freely if the traction were cut off? I'm guessing about 2 miles.
Two miles would be a typical braking point on level gradient 125 mph, for class 800 braking at 40 percent, about 4.9 percent g, allowing 2 seconds freewheel.To settle an argument, how far would a loaded eight coach train doing 125mph on level track roll freely if the traction were cut off? I'm guessing about 2 miles.
Which is one of the reasons that rail is so much more efficient in fuel use compared to road haulage.Wow, that's impressive.
I would estimate about 30 miles, given a 480 tonne passenger consist ?To settle an argument, how far would a loaded eight coach train doing 125mph on level track roll freely if the traction were cut off? I'm guessing about 2 miles.
It's about 90mph. The rule of thumb is 100mph equates to 100 metres of height gained. The Lickey incline is about 300feet.how fast would it be going through Bromsgrove?
However, kinetic energy is proportional to the square of speed, so descending twice the distance only increases the speed by a factor of about 1.4. In fact it will be less than that because air resistance increases with the square of speed too.It's about 90mph. The rule of thumb is 100mph equates to 100 metres of height gained. The Lickey incline is about 300feet.
Tens of miles. I estimated 38km in post #7, but we would have to model the non-linear wind resistance to get a more accurate answer. I doubt if anyone has actual relevant experience of that situation in Britain, but there may be real-life examples from places like the Nullabor plain in Australia (though not from 125mph).Doing 125mph to start with, how far does that train coast for?
True. But I remember I got 90mph when I worked it out a couple of years ago.kinetic energy is proportional to the square of speed
And the line continues on a general descent south of Bromsgrove, although I'm sure it undulates a bit. So, using the figures mentioned upthread, the train would roll for at least 20 miles from here?Tens of miles. I estimated 38km in post #7, but we would have to model the non-linear wind resistance to get a more accurate answer. I doubt if anyone has actual relevant experience of that situation in Britain, but there may be real-life examples from places like the Nullabor plain in Australia (though not from 125mph).
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True. But I remember I got 90mph when I worked it out a couple of years ago.
EDIT: I previously used Barnt Green (at 175m elevation) and Bromsgrove at 79m, giving the Lickey Incline at about 96m, just over 300ft. Someone else on here will be able to give us more accurate figures.
38km is 24m, but the speed at bromsgrove will be less than 125mph. My best guess would be around 20, say 15-25 miles. What would help would be any real life experiences from class 91s having to coast through sections of damaged OHLE on the East Coast route. i.e. how much speed loss over how many miles?And the line continues on a general descent south of Bromsgrove, although I'm sure it undulates a bit. So, using the figures mentioned upthread, the train would roll for at least 20 miles from here?