Elecman
Established Member
Shame for all those OLE trainees who now won't have a job to go to.
Shame for all those OLE trainees who now won't have a job to go to.
And so the cycle continues, so that when electrification takes off again there will be a lack of skill again!!!!
Once again it appears I will probably be proven correct.
I truly am Cassandra... less beautiful though obviously![]()
And so the cycle continues, so that when electrification takes off again there will be a lack of skill again!!!!
There's still announcements to be made regarding Swansea and Valley lines electrification...........
(Well, I can hope)
In the January edition of MR in Roger Fords' column, there is a comment about a MP questioning why Selby-Hull electrification has been canned. The Transport Secretarys' response was the TOCs have ordered bi-modes so there was no need to electricify.
How can anyone now deny that bi-modes are now killing electrification? It's just far far too easy to cancel projects but still give passengers those shiny new trains. I doubt that GW electrification will be completed.
There's no need for bi-modes to give passengers shiny new trains - straightforward DMUs can also give passengers shiny new trains with no electrification needed at all and DMUs are hardly new inventions are they? So it can't be solely the fault of bi-modes that electrification projects are not being completed.
Bi-modes are killing electrification, pure and simple.
Well all the evidence I'm reading seems to suggest that bi-modes are the biggest factor in it all. It seems they currently trying to negate the performance issues with the lack of wires and extended running on diesel. The language like 'bi-modes can bring benefits for passengers without disruptive engineering works' seems like they are going for the easier PR scoops. Yet some were suggesting the bi-mode would encourage them to electrify quicker, hmmm that's been proven complete bull!
More quotes;'given that the number of passenger benefits already being delivered without electrification', "there is almost no further benefit to justify further publicly funded investment and the disruption electrification would bring".
Bi-modes are killing electrification, pure and simple.
If only they'd done what you told them to do and just slung up the wires - even, apparently, on parts of the GWR network where the economics of doing so were dubious to non-existent without other lines being wired as well - and then ordered some non-existent off-the-shelf UK-gauge electric express trains once the wiring was done, then all would have been just fine and dandy...:roll::roll::roll:
Bi-modes are killing electrification, pure and simple.
So why do they want to electrify anything at all? This is a question you have still yet to answer, despite being asked it many, many times.
Because what bi-modes do is not kill electrification per se, they simply destroy the network effect.
However the effect will be much the same since almost all areas with high enough traffic densities to justify electrification without the network effect are effectively completed.
Maybe the MML if you are lucky but I somewhat doubt it.
After that the electrification programme is dead as a dodo.
Taking the North of England as a model it is difficult to think of large numbers of DMU diagrams that do not spend a significant amount of time under overhead wiring.I don't think so. Most of the lines in and around the north of England would be unsuitable for bi-modes and increasingly unsuitable for DMUs with increasing passenger numbers.
DEMUs are probably the future however - the upsides in the face of an intensively worked railway seem to be telling now.Bi-mode trains without overhead wires are just heavier, more expensive DEMUs, which in themselves aren't really any better than standard DMUs.
Well the existance of the Stadler units demonstrate that bi-modes are apparently economic with relatively little electric operation.They're only useful when they spend a long time on intensively-worked electrified mainlines, as all of the Hitachi bi-modes ordered yet far will be doing every day. The Stadler units are a bit of an oddity but Stadler seem keen on their own self-powered concept, so it's hardly surprising that they stuck a pantograph on top of trains which won't spend long under the wires.
But a full fleet of electrodiesels will be easier to manage than a mixed fleet of electric and diesel units.There's still a network effect in that straight EMUs will still be cheaper and easier to manage than a fleet of bi-modes.
It should be noted that SNCF has decided not to purchase any more diesel units now that it has bought electrodiesel units.For instance, electrification to Kirby and Ormskirk from the non-Liverpool direction is unlikely to be worthwhile in isolation, but once you've done all the other lines in the area you may as well just get the job done. This is especially so when these services wouldn't be self-contained for efficiency's sake, as having a whole fleet capable of bi-mode operation just for the sake of a branchline or two would be quite a waste.
So your plan to reduce the cost of electrification.... is not to electrify most of the network?The cost and complexity of electrification can and will be brought down by judicious use of the enhanced battery technologies being used in road vehicles in the next decades.
The point is WHY are the economics 'dubious' in Britain when virtually everywhere else there does not seem to be a problem?
DEMUs are probably the future however
Really? Does your amazing crystal ball know what the oil price is going to be in 10 or 20 years' time? Thought not - if it goes back to where it was not very long ago then electrification suddenly becomes a whole lot more attractive again.
Really? Does your amazing crystal ball know what the oil price is going to be in 10 or 20 years' time? Thought not - if it goes back to where it was not very long ago then electrification suddenly becomes a whole lot more attractive again.
The cost of fuel is already going up again. Even if oil prices remain stable, I suspect the pound is going to continue to fall relative to other currencies as Brexit kicks in. Electrification is going to look more attractive again when this happens. Hopefully the lessons learned from other projects can be applied making electrifying other lines cheaper and faster.
The cost and complexity of electrification can and will be brought down by judicious use of the enhanced battery technologies being used in road vehicles in the next decades. Onboard batteries need only be as large and powerful as required to get across the biggest impediment to electrification on a route. 80% of the electrification can be done for 20% of the cost and difficulty, at which point you would be mad not to electrify all the lines you possibly can. While the clearances used on Paisley Canal might not be permissible any more, the concept of doing wiring on the cheap through inventive engineering and management should be here to stay.
This is from a bog standard linesman's point of view who's been working on this project.
Very interesting observations.
If I remember correctly you have also worked on the NW project (Series 2)?
I know that project had its problems in the early stages (probably still does!), but did it feel like a better managed project than GW?
NW (and probably EGIP) is more typical of the electrification programmes to come than the GW project with its quadruple track and 140mph spec.
I get the impression that clearance design issues and local authority permits have cost all the projects dear, irrespective of the construction issues.
I wonder what NR will say to the Goring Gap mafia when they review the completed installation as promised?
I can't see much "prettification" rework being sanctioned.
Really? Does your amazing crystal ball know what the oil price is going to be in 10 or 20 years' time? Thought not - if it goes back to where it was not very long ago then electrification suddenly becomes a whole lot more attractive again.
We have always suspected that some of the more academic standards imposed are just a result of bureaucrats triumphing over reality, but can our correspondents identify any specific items which ORR or their acolytes have turned down.ORR refusing to allow applications for derogations from the more onerous rail safety standards
Taking the North of England as a model it is difficult to think of large numbers of DMU diagrams that do not spend a significant amount of time under overhead wiring.
Most of the inner suburban networks of most of the major cities are electrified already and thus most DMU diagrams operating out of them operating significant under wires.
DEMUs are probably the future however - the upsides in the face of an intensively worked railway seem to be telling now.
And since they are probably only a few percent more expensive if you turn them into electrodiesels will likely militate against building any more pure diesel units.
Well the existance of the Stadler units demonstrate that bi-modes are apparently economic with relatively little electric operation.
Pending advances in traction converters will also significantly reduce the weight and cost penalty of 25kV electric capable units by shrinking the transformer drastically.
But a full fleet of electrodiesels will be easier to manage than a mixed fleet of electric and diesel units.
It should be noted that SNCF has decided not to purchase any more diesel units now that it has bought electrodiesel units.
They are doing precisely what you believe to be uneconomic.
But the point I am trying to make is that almost none of the surrounding routes will ever be electrified. Only the very high traffic density ones will be - especially given the escalting cost of electrification.
And none of the surrounding unelectrified routes are particularily high density.
So your plan to reduce the cost of electrification.... is not to electrify most of the network?
A good number of the line in and around the North are natural candidates for electrification. Hills, tight curves (making acceleration/deceleration more important), reasonably closely spaced stops and a lot of people who'll need to commute into busy city centres makes a compelling case for traditional electrification.
Why would you need a huge bi-mode fleet. We have mixed electric and diesel fleets now. You would simply have a mixed electric and bi-mode fleet.Once these lines are done, the lines left can plausibly be electrified for the sake of making the network simpler to run. For instance, once the Atherton line is done and linked to electrified Caldervale services, it would be grossly inefficient to rely upon a huge bi-mode fleet for the sake of not extending the wires to Kirkby/Skelmersdale.
The weight of the diesel engine-generators is pretty negligible however, they weigh less than the passengers do. The primary saving of electrification is the reduction in use of the engine with fuel and maintenance savings. A diesel engine that only runs half the time will require considerably less maintenance than one that hs to be used all day every day.A considerable chunk of the benefit of electrification boils down to making things simpler and lighter, which bi-modes can't do. You might have improved acceleration using distributed electric traction but you won't have the reduced mass which multiplies that effect.
Thus enabling a mixed fleet of bi-modes and electrics. Which rather demolishes your argument that total electrification would be pursued to eliminate the electrodiesel subfleet.ICEC aren't getting a full fleet of bi-mode IEPs. There's still an additional upfront and ongoing cost involved in taking around more diesel engines than are actually required. The trains can be designed in a modular fashion so that the bi-modes are simply the electric-only units with diesel engines added on, but then most of the difficulty of having two separate fleets disappears.
It's not that good. It has numerous lightly trafficked routes going in various directions that mean that you get terrible utilisation on the overhead wiring equipment.The area around the North West is pretty ideal for electrification. It's hardly rural and it's only a short distance away from major city centres with employment and other attractions to generate lots of traffic.
What's the difference between this and simply using a diesel engine instead of a battery?Where did you get that idea from? The idea is to avoid the most expensive parts of electrification, so that the money can instead be spent on wiring up more plain-line route. For instance, a big chunk of the cost of wiring up the Wigan-Kirkby/Skelmersdale line will be getting electrification clearnace under the WCML just west of Wallgate station. With batteries, such clearance would never be required, as trains could drop their pans at the platform, go under the bridge using battery power alone and then raise the pan again when the wires return. Electrifying a plain-line route is almost always easy; it's when you have low bridges or old tunnels or hard-to-electrify stations that the costs really pile up.
However most of the un-electrified sections of these routes are run at relatively low traffic densities. A tiny handful of vehicles per hour is not a good case for electric operation given the now enormous cost of the capital.
The trunks of these routes might justify electrification but with bi-modes unless an entire route justifies it there is little reason to do so.
For example the Buxton Line already has the benefits of electric operation as far as Hazel Grove but the remaining section is not heavily enough operated (and is unlikely to ever be so) to justify electrification on its own merits. As there is now effectively no fuel saving credit for eliminating under wires running.
Why would you need a huge bi-mode fleet. We have mixed electric and diesel fleets now. You would simply have a mixed electric and bi-mode fleet.
But a full fleet of electrodiesels will be easier to manage than a mixed fleet of electric and diesel units.
Additionally why would you electrify the Atherton line? It is relatively lightly trafficked and bi-modes would enable you to use the electrification between Salford Crescent and central Manchester.
Two short DMUs an hour is not a business case. Traffic would have to treble or more before it starts to look reasonable.
The weight of the diesel engine-generators is pretty negligible however, they weigh less than the passengers do. The primary saving of electrification is the reduction in use of the engine with fuel and maintenance savings. A diesel engine that only runs half the time will require considerably less maintenance than one that hs to be used all day every day.
And energy from electricity remains considerably cheaper than from diesel, even with current low fuel prices.
Thus enabling a mixed fleet of bi-modes and electrics. Which rather demolishes your argument that total electrification would be pursued to eliminate the electrodiesel subfleet.
It's not that good. It has numerous lightly trafficked routes going in various directions that mean that you get terrible utilisation on the overhead wiring equipment.
If there was one line between Manchester and Liverpool with branches off of it it would have been electrified in the 60s - but because the traffic was spread over several it could never justify it.
What's the difference between this and simply using a diesel engine instead of a battery?
You are proposing to electrify only those parts of the network that can justify it on their own merits.
However you seem to be suggesting that electrifying short sections on a route with gaps in between is a good idea - that just makes me think of horrifying numbers of pans getting ripped off on bridges or having their ADDs triggered because they are going up and down like a yo-yo.
When faced with the threat of so many delay minutes the operators will just opt to use diesel engines instead.
To be honest a return to 6.25kV or even 1500V would be more economic than discontinuous electrification - even with the insane EU requirements the clearance would be far smaller.