SpacePhoenix
Established Member
- Joined
- 18 Mar 2014
- Messages
- 5,491
Will they tow the 230 to the nearest place they can get a low loader to and then send it back by road?
Is it likely to be able to make it to Long Marston under its own power?
St. Ives, maybe. Exmouth, I don't think so. Cutting the Exmouth branch back to Exeter Central (EXC) would be disastrous - I'm at Exeter St. Davids (EXD) fairly often and *masses* of people get on/off the Exmouth trains there. Having to get on a Waterloo train or a EXD/EXC shuttle at EXD and then change onto a tram (probably after going through the ticket barriers to a segregated tram stop) at Exeter Central would ruin this service for many of its users.
Unless they know what caused the fire and are able to fix the problem I doubt if it will. I wouldn't expect either Vivarail or Network Rail to be happy about that happening.
Just isolate/remove the charred engine?
Just isolate/remove the charred engine?
only if you are 100% sure the other won't go the same way
I had assumed that part of the reason for using 158s on "scenic" lines is for the vestibules. None of the 230 layouts I've seen have them, so I think you'll need a more imaginative proposal if you want to see 230s running up and down the ECML.On that note, how about the Scottish Borders? allow 158s to be cascaded to more demanding routes in Scotland?
I had assumed that part of the reason for using 158s on "scenic" lines is for the vestibules. None of the 230 layouts I've seen have them, so I think you'll need a more imaginative proposal if you want to see 230s running up and down the ECML.
This.
If it can be moved under its own power it will.
I could well be wrong, but my understanding is that one of the main advantages of the railway is that, once moving, very little energy is required to keep moving. So the engines would only be running 'flat out' when starting from stations or signals.So the engine in question, is most likely far too underpowered and wouldn't have been designed for such long periods of running flat out, whilst powering such a heavy load, the engine would have been running flat out for such a long time...
There's quite an interesting debate taking place over on WNXX on the 230 power units & their suitablility including possible modifications made to allow them to operate (or not) in their current function. I'm not totally savvy on engine design / suitability, but there are some doubts amongst some members. Worth a read through if anyone has signed up for it.
I could well be wrong, but my understanding is that one of the main advantages of the railway is that, once moving, very little energy is required to keep moving. So the engines would only be running 'flat out' when starting from stations or signals.
If the engine is based on a Ford Pickup engine, like those are saying on WNXX, I'd still say the amount of time spent running full whack, whilst accelerating would be considerably more than in your average pickup truck, with far higher loads.
My apologies if this has already been covered. But from the information I've been able to gather, from another railway forum and may possibly explain why the fire occurred; maybe down to the actual design of the engine used. This is the first time an automotive based diesel engine, of that size and RPM has been considered for use in a commercially viable, multiple unit.
The engine currently being used is a 3.2 litre, Duratorque engine and the least powerful engine used for this kind of application before was an 8.2 litre Leyland engine in the LEV1.
So the engine in question, is most likely far too underpowered and wouldn't have been designed for such long periods of running flat out, whilst powering such a heavy load, the engine would have been running flat out for such a long time, imagine the amount of heat that would have generated. Most engines typically designed for automotive applications would never have been designed for that kind of intensive running. No wonder it set fire!
I think Vivarail originally considered having a higher powered onboard engine located in a compartment, but I can't think for the life of me why they would give up such a common sense measure, except perhaps to increase passenger capacity, by having less room taken up by the engine cubicle.
It's a Ford engine used in a number of applications. And plenty of pickups will be running at full revs along motorways/highways.
The only things I'd be concerned about is the way it is mounted and the very different types of shock and vibration (and muck) you get from steel wheel/rail as compared to a road vehicle.
Of course all this is pre-guessing what actually happened, but Id imagine using a basic design of engine, fitting it into a different environment from its original design spec (with potentially additional mods), with different running cycles could expose a stress that causes such failures that nobody had previously imagined. I think the fact that this modular engine block hasnt just been swapped out on site means that VR are concerned that there could be a more complex issue at hand that needs further investigation.
There's also the complication that it has been on fire - the mountings or even body and underframe may have weakening or damage. They might even find themselves having to build a new end coach - not as if they're short of them.
I suspect that is the case.That's assuming there's not enough space below the underframe for a standard DMU engine.
What I don't understand is why go for an engine type that's untried in rail applications, if you're trying to design a train that's cost effective.
Would it not be more reliable to mount the engine onboard in it's own cubicle and use a standard DMU engine type. That's assuming there's not enough space below the underframe for a standard DMU engine.
As I understand it, back when the D-train proposal was first announced nearly 2 1/2 years ago (!) one of the perceived problems back then was the difficulty in sourcing emissions-compliant underfloor engines for the UK market.. and that pairs of automotive engines that were compliant, was one of the key features of the D-train proposal...
This, and many other aspects surrounding the application of the Ford Duratorq engine in the D-train, have indeed been discussed at considerable length much earlier in the 300+ pages of this thread... but obviously before one went on fire..
Transit vans has air flow going though the engine bay because of the front grills on the vehicle. What form of air flow has the engine got when fitted in this raft on the D train? I suspect it's very little.