GRALISTAIR
Established Member
A standalone system like Merseyrail will never change from being completely DC to mixed power.
Never, never say never again. That is what I was taught. A very bold statement indeedico
A standalone system like Merseyrail will never change from being completely DC to mixed power.
Oh dear indeed but not worth responding to considering you're calling people 'third rail fanatics'. You need to read what's actually been said before throwing such barbs.
The infrastructure has survived for 112 years with very little issue...so again I ask why fix it if it ain't broke? The money wasted on converting Merseyrail could be better spent electrifying another diesel line more worthy. Electrification schemes are being held back, or worse cancelled altogether because of a lack of funds. Merseyrail works just fine on DC...and has done for over a century.
Never, never say never again. That is what I was taught. A very bold statement indeedico
GWML electrification has been expensive. In Scotland, not so much so.Yet current 25kv electrification is outrageously expensive,almost prohibitively so,compared to the past,& it's not just Mr Ford who says so.
@Gareth
There's other factors to consider as well though - take cost savings from regenerative braking. AC sections are much, much longer, meaning that the power generated is much, much more likely to have a train drawing power at that moment than a much shorter DC section would. This is greatly exacerbated by the low frequencies (by metro standards) of most of the Merseyrail branches. That's my point about OHLE trimming the outer reaches of the 3rd rail areas. They're spaced out, infrequent, and would be much, much better using OHLE than DC.
As posted up-thread by a number of posters, there is a presumption against new 3rd rail installations so the argument is about making the case that 3rd rail will have significant enough advantages over an overhead solution to outweigh its efficiency and safety shortcomings. Infill and short extensions of existing systems likely will, but larger-scale extensions (or new lines) almost certainly won't.The argument isn't that 3rd rail is better; it's whether the supposed benefits of OHLE are worth the faff of partially converting a currently whole 3rd rail system and all the works and disruption that would entail plus trains having to change power when they didn't have to previously...
We'll just change the laws of physics then, shall we?Although it might if there were less power losses...
There will of course be more risk to lineworkers, although I think they try to work with the power off unless it's unavoidable for whatever reason. The 8 times as deadly statistic still doesn't seem credible though, unless a hell of a lot of lineworkers are meeting their maker. It'd be intresting to see the methodology behind the statistic.
Any losses of the type you describe are going to be insignificant as compared to the losses caused by transmitting power at 750 volts v 25kV. Losses due to resistance increase with the square of the current.No need to change the laws of physics.
Read my post 98.
Even if you are, I^R is going to result in huge losses, day in - day out, regardless of wet ballast or dry. 750V DC is just not an efficient way to transmit large amounts of power.Exactly. If I am right about wet ballast providing a path back to the power station the loss in DC is enormous...
EIt would be great if an electrical engineer could confirm what I am saying is right.
Why is it claimed 3rd rail track maintenance is costly?
A third rail benefit which I omitted to flag up in my last post; DC units don't have to drag 2 tonnes of transformer per 4 cars up hill & down dale.
We'll just change the laws of physics then, shall we?
Besides, 2t of transformer on a 150t unit is a minor issue compared to the power loss in the conductor rail through resistance.
Given that it has to be beefy to handle the current, I wouldn't be surprised if it was pretty close.I've never actually asked, but what's the total weight of shoe gear and wiring on a 750V DC unit anyway ? It has to add up to something, even if it's not quite 2 tonnes.
I've never actually asked, but what's the total weight of shoe gear and wiring on a 750V DC unit anyway ? It has to add up to something, even if it's not quite 2 tonnes.
Yes I love the sound of all those rotary converter substations whining away, run up and down by their proud attendants, not to mention the quaint old paper insulated cables, the Edwardian transformers and switchgear, the AC side still on 25 cycles. Yet another reason to get out of Europe! Oh and I forgot Durnsford Road power station proudly belching smoke.The infrastructure has survived for 112 years with very little issue...so again I ask why fix it if it ain't broke? .
Okay, I've been trying not to bite but I give in - what on Earth does this have to do with Europe?Yes I love the sound of all those rotary converter substations whining away, run up and down by their proud attendants, not to mention the quaint old paper insulated cables, the Edwardian transformers and switchgear, the AC side still on 25 cycles. Yet another reason to get out of Europe!.
Well... for a flat suburban stretch of double track with roughly 20 miles you may need 6 or 7 substations. For the same stretch with aAny losses of the type you describe are going to be insignificant as compared to the losses caused by transmitting power at 750 volts v 25kV. Losses due to resistance increase with the square of the current.
French / Russian / Portuguese / British all in the same boat with a wee hand of zee Germans (which already had their 15 kv 16 2/3 hz (a third of 50 hz) up and running for decadesDon't know if anyone has mentioned it but there was talk of electrifying the Marshlink line with 3rd rail but I can't see it happening.
I can't see any more third rail happening though, there hasn't been any major expansion since Weymouth in 1988 and most of the network was installed pre-1956 when British Rail decided the French 25kV AC was the best option. In the 1930s as well I think there was still a large amount of DC generation nearly all of which has ceased now meaning current has to be generated, rectified and then many times inverted again for the train motors which costs a large amount of money.
As posted up-thread by a number of posters, there is a presumption against new 3rd rail installations so the argument is about making the case that 3rd rail will have significant enough advantages over an overhead solution to outweigh its efficiency and safety shortcomings. Infill and short extensions of existing systems likely will, but larger-scale extensions (or new lines) almost certainly won't.
Okay, I've been trying not to bite but I give in - what on Earth does this have to do with Europe?
(Apologies all, I just had to ask.)
He likes outdated and unsafe technology like paper insulated cables it seems.

There will be no significant new 3rd rail extensions. No one's suggesting the Midland Main Line be electrified with 750v DC. It also depends on what you consider 'short' extensions. Like all directives, it's open to interpretation. That's quite deliberate and one is supposed to apply common sense when referencing it. I consider the few muted Meseyrail extensions as 'short' for example and so see no need why they can't be 3rd rail, bar extension to Warrington. Some have read the same thing as 'no new third rail whatsoever' though and not only that but also any already extant should be changed over.