Any transformer that loses anything close to 20% of the input power is in serious need of replacement!On AC it then has to go through transformers which lose up to 20% of the power before it goes into traction.
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Any transformer that loses anything close to 20% of the input power is in serious need of replacement!On AC it then has to go through transformers which lose up to 20% of the power before it goes into traction.
No Poster can seriously claim that failed third rail is as disruptive as failed overhead. Yesterday & this morning Paddington was frozen by damaged overhead & 2 days before a lightening strike at Blisworth on the overheads on the WCML ruined services for 5 hours.
A Poster said he would find figures to prove third rail had more deaths than 25kv. He made his excuses and left,nothing provided.
Another Poster linked to a study showing DC used x% more kWh for the same work as AC. If you read the small print the study said it was power consumed at entry to the train,not into the motors. Totally unfair to DC,all the power goes to the motors to move the train. On AC it then has to go through transformers which lose up to 20% of the power before it goes into traction.
This no more DC attitude,using spurious arguments, means routes like ore to ashford,Uckfield to hurst green,Reigate to Guildford etc cannot be filled in.
So we have to use dated diesels. No one is advocating Third rail for anything more than fill ins. It can't deliver the power for more than about 100mph. But if the third rail is kept clear of ballast(at Paddington today I noticed NR had piled it right up to LUL's third rail from platform 14),it's economical & easily done & easy on the eye & what is wrong with that if it allows the railway to be more economic?
Plus, if your problem really is losses during AC to DC conversion, all you are doing is shifting the location of the loss from the locomotive to the trackside equipment.Any transformer that loses anything close to 20% of the input power is in serious need of replacement!On AC it then has to go through transformers which lose up to 20% of the power before it goes into traction.
Indeed. Given that the most powerful bolts are upwards, lightning would cause a trip at the very least.I doubt that 3rd rail would fair any better then overhead when it comes to lighting strikes
I wonder what the H&S risk difference actually is. How many staff have been electrocuted in recent years on DC lines? The only RAIB report in recent times I recall on such an incident was on AC overhead near Runcorn, where the OHLE fell down.the logical choice for what was then the Southern Region was third rail extension. H&S risks were hardly considered compared with today
Read the thread: it's been posted that the third-rail network contributes eight times the risk despite being less than half the size of the AC network.I wonder what the H&S risk difference actually is.
I was looking for "actual" incidents rather than the "risk" of them. Unfortunately "Risk Assessment" has been completely corrupted in recent times by fictional assessments and figures plucked out of the air, invented to suit the agenda of the authors.eight times the risk
I don't know if that data is published anywhere, specifically breaking it down by OHLE v third-rail.I was looking for "actual" incidents rather than the "risk" of them.
I was looking for "actual" incidents rather than the "risk" of them. Unfortunately "Risk Assessment" has been completely corrupted in recent times by fictional assessments and figures plucked out of the air, invented to suit the agenda of the authors.
No Poster can seriously claim that failed third rail is as disruptive as failed overhead.
Only today Paddington is paralysed, all 8 approach lines, because an overhead support was struck by a derailed train way over on one side of the layout.
Just to pick up these old points, reduced 6.25Kv was never installed on the West Coast, although it was originally proposed, and no 6.25Kv locomotives were ever built. Electric locos could indeed not have run on the GE until converted. The "25Kv" operation on the GE was in fact mostly at the reduced 6.25Kv, and the suburban units on the Shenfield, Southend, Enfield and Chingford etc lines hardly ever ran further out onto the full 25Kv.I wondered about that too, as I seem to remember Class 86 didn't have 6.25kV capability (maybe 81-85 didn't either?). Only the Stockport and Styal routes were originally electrified and barring the largest electric loco class from either would have been far too restrictive. I don't think electric freight could run on the GE until the 6.25kV was eliminated in the 80s.
No, it changed over in 1959 directly from steam. It was before even the Class 40 locos were built in quantity.Bald Rick said:Was Manchester - Crewe fully dieselised at electrification?
This was one manufacturer's electrical equipment (not EE). No vehicles were destroyed, all were repaired, although one transformer explosion led to a passenger fatality in the adjacent saloon. Separately, the earlier 25Kv (only) locomotives did lose several over time to equipment fires.AM9 said:some of the EMUs had a design shortfall that meant occasionally, they would not satisfactorily revert [from 6.25Kv] to the full serial 25kV configuration ... with spectacular catastrophic failures, usually involving a fire that destroyed the motor car.
If the 3rd rail was struck by lightning would just the local substation trip or would a number of adjacent substations trip as well?
The statistics for risk of electrocution being eight times higher comes from the number of staff who manage to electrocute themselves on the third rail and then report such an occurrence through their chain of command.
Perhaps managers in AC areas are not supplied with ouija boards?
Normally just the sub for the section affected. Depending how close the strike is, the effects can be rather dramatic.
The Glasgow North electric train services (The Blue Trains) came into service in November 1960, but after a disastrous series of transformer explosions, had to be temporarily withdrawn until the problems could be rectified. Services resumed again in November 1961.
It might any trains in the section a few problems also.
Here are some Glasgow details:
http://www.scot-rail.co.uk/page/electrification
http://homepages.enterprise.net/iainlogan/railway/gse1.html
... There is also a mention (paragraph 285) of an AC locomotive selecting 6.25kV on a 25kV section, so at least some of them must have had changeover equipment.
My dictionary says 'electrocute is to injure or kill someone by means of an electric shock'. It's from Oxford, they might change the definition when they get their own 25kV wires for GWR drivers to crash into.
The official UK dictionary,the concise Oxford dictionary, which I have before me says electrocute; 'kill by electricity. Cause death by electric shock.'
And that's it,take a look. And bollox,which the same poster used,does not exist.
Not trivial because the important stats about people killed by AC & DC have NOT been provided. And what is the source for the information that was given,thin air? I hope not. But seriously, provide the source & it will advance the argument,otherwise it is no more than the dross that blows around the Nulabor plain.
There is no such thing.The official UK dictionary...
Ignoring the abusive language, none of this dancing on the head of a pin here is going to change the position regarding 3rd rail. The stats regarding actual deaths caused by OLE vs 3rd rail are not relevant. The risk assessment is the correct tool to determine the way ahead which is that no new 3rd rail mainline routes will be sanctioned. 25kV OLE is the only viable and acceptable system approved for mainline use.

Oh, the irony! Basing your definition of what is 'official' on something a friend told you. While ignoring the definition of 'official' in what you consider to be the 'official' dictionary: "Derived from, or having the sanction of, persons in office; authorized or supported by a government, organization, etc.; hence (more widely) authoritative; formally accepted or agreed."The Oxford dictionary is the only one used by the BBC I was told by a friend a few years ago...