Gareth
Established Member
- Joined
- 10 Mar 2011
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I can very well imagine it would but that doesn't necessarily provide a rebuttal to anything I just said.
Happened on every third rail at sometime. If it went 25kv whats the difference ?If you introduce a live exposed conductor rail to a place that didn't already have one you've introduced a new risk, which will have a different potential danger compared to track that's had the same risk profile for decades.
If you introduce a live exposed conductor rail to a place that didn't already have one you've introduced a new risk, which will have a different potential danger compared to track that's had the same risk profile for decades.
Yes. The 'problem' now is that the industry has changed its opinion on the acceptability of that risk.Maybe but that would've been the case when the existing third rail was put in.
Roughly 4.7 metres vertically.If it went 25kv whats the difference ?
Congratulations.I grew up round Bury, I cant count how many times I bunked BQ on a sunday as a kid. I even had a wooden earth pole from a unit at home at some point.
i’m still alive.
Yes, the risk profile does also depend on other things such as the frequency of trains. Or are you trying to argue that the presence or absence of conductor rail is irrelevant to the risk?Actually the risk profile depends on other things such as frequency of trains, not been a constant for decades.
You cannot really take adding a third rail as an unacceptable risk when there is plenty of it around already that there is no policy of getting it all removed.
Was the author's name Bulleid?Studies dont always reach the sensible conclusion.. I recall a study on a proposed mainline steam locomotive new build proposing the only safe option for wheels was solid not spoked..
he was a visionary, afterall he proposed burning turf, instead of coal.Was the author's name Bulleid?
I don't agree with Salisbury. That line should be 25kv AC OHLE, with trains that can run on both systems. Long term, other parts of the South West network could probably do with conversion too. It has quite long distances that South Central & South East don't really have.Personally I'd think that infill is a bit of a no brainer- especially smaller projects like Marshlink, or ones like Uckfield which also removes diesel from a polluted city centre.
But new major extensions away from 3rd rail land? Nope. Salisbury is a possibility, but as so many services continue to Exeter it might be better as 25kV (although it would definitely benefit from bi-modes in its current state).
Anything isolated away from existing electrification would probably be better off with 750v overhead as used on tram networks rather than 750v 3rd rail as a way to minimise risks and costs, although I do wonder if just building to 25kV would be better from the beginning.
I do wonder though if it would be possible to have a train shoe which can work with both top and bottom contact 3rd rails. I don't think existing units could, due to the shoe beams and the outside frames, but an inside frame bogie with a 2 sided shoe might be possible. But I dropped out of my engineering degree... so maybe there's a very good reason why it can't be done!
The 'problem' now is that the industry has changed its opinion on the acceptability of that risk.
As for safety, studies reaching conclusion that says its dangerous, despite being surrounded by thousands of miles of track safely operating for nearly 100 years, and likely to continue so for another hundred sounds more academic than substance.
ORR’s most significant concern in regard to legacy third rail systems (the “legacy network”) is the running of bare, live conductors through publicly accessible areas. These conductors are not insulated or shrouded. The legacy network does not allow quick, secure isolations, and exposes individuals to a range of risks whilst carrying out isolations. Due to the difficulty in obtaining isolations on the legacy network, a lot of work tends to be carried out on or near the live conductor, further undermining safety and weakening compliance with the applicable legislation. This is not an abstract or theoretical risk: the harm done to both workers and members of the public by the legacy network occurs significantly more frequently than on the overhead AC network.
This is borne out by data from RSSB’s safety risk model – despite the legacy network being only half the size of the AC network (4400km compared to 8200km), it contributes almost eight times more (in terms of fatalities and weighted injuries per year) to overall risks on the railway. See FWI comparative data for OLE / conductor rail / non-electrified: Network Rail Electrical Power Asset Policy December 2012 (Table 2.1, page 52).
What you have posted my well be true and 3rd rail is 10 times more dangerous than OLE but OLE is very safe and the number of incidents is very small so even at 10x worse the number of 3rd rail incidents is still small.Well it's more that industry has had to catch up with the increasingly litigious nature of society. Gone are the days when you could say "serves you right" if someone came to harm due to their own misadventure.
Er, not really. The ORR's current presumption against further CRE schemes is based not on academic studies but on figures from the RSSB concerning fatalities and weighted injuries due to the different electrification systems. At the risk of going over ground already well-trod around 18 months ago, the ORR's DC Electrification Policy Statement contains the following statement.
They then give reference to a footnote which says...
When we finally got to see the information contained within Table 2.1 it showed that the average annual risk to an adult trespasser was 10 times greater from CRE than from OLE. You can see the table for yourself attached to this post.
I'm aware of the consultation and hopefully the ORR will be told to remove it's presumption. Maybe a statistical analysis could be carried out to see the risk of fatalities and injuries is higher due to the current service, eg diesel pollution, increased car journeys due to poor service, injuries during more frequent maintenance.I posted that to reassure @Sm5 that the reluctance of the ORR was based on real figures rather than some piece of academic work that he would appear to be mistrustful of.
Yes I agree that it still represents a small total number of incidents, but it still represents a greater risk. It is for this reason that the RSSB started a consultation last year to try and work out whether or not CRE can still be used for electrification schemes (I linked to the discussion about it back in post #3). What comes out of this process still remains to be seen. However, as I mentioned, these measures of risk are clearly a large part of what informs the ORR's presumption against CRE.
Maybe a statistical analysis could be carried out to see the risk of fatalities and injuries is higher due to the current service, eg diesel pollution, increased car journeys due to poor service, injuries during more frequent maintenance.
Well it's more that industry has had to catch up with the increasingly litigious nature of society. Gone are the days when you could say "serves you right" if someone came to harm due to their own misadventure
When we finally got to see the information contained within Table 2.1 it showed that the average annual risk to an adult trespasser was 10 times greater from CRE than from OLE. You can see the table for yourself attached to this post.
This is where lack of joined up thinking often fails
Use of trespass figures (which are from another area, or include other areas), then use them to appraise a rule for a line where there may never have been any incidents of trespass.
So get a theoretical risk number which is based on similar (but not the correct) facts.
It would be more useful if someone said how many incidents on similar bits of track, much more useful if you base data on say Wareham-Weymouth than use data including busy urban Clapham Junction area.
I choose Wareham-Weymouth simply because the line (mainly rural with couple of big towns) and train frequency is similar, and have got 24 years of data since it was electrified. And if want to have a look there is also about 20 years of diesel operation before that for a comparison.
Perfect data for current diesel operation vs proposed electric operation for a relevant risk analysis.
The Railways and Other Guided Transport Systems (Safety) Regulations 2006 as amended (October 2021) mandates the use of The Common Safety Method for Risk Evaluation and Assessment for changes to railway infrastructure. This would need to be applied for each project on a project specific basis, not on a general national basis. So rural risk assessments are likely to differ from suburban ones. Risks would need to be identified on a project basis along with mitigations for the type of electrification specified, or, if none is specified, then for both CRE and OLE if any electrification at all is to be used.
Risk identification workshops need to have the right people in attendance, with the right competencies and skills.
It would be very interesting to read the Risk Identification Reports and, of course, the proposed mitigations!
Should new tram lines be built using the same principle as Newcastle NSW, where OHLE is not used, but instead the battery powered trams charge up at each stop via the pantograph?
Thinking about Merseyrail - given the only real problem is the tunneled core, would a simple solution not be to have AC units with secondary batteries, and have the tunneled section operated on said batteries that are recharged on the long sections over the rest of the system? That gets rid of one of those legacy 3rd rail islands.
Yes of course. And the RSSB report I linked to is clearly not that. However, it does still have a role to play in the discussions given that it informs the ORR's position on electrification.
I would be interested to know how you assess the risk of a specific electrification project when the absence of electrification across that route represents an equivalent absence of specific local data. Presumably a measure of risk has to be applied which comes from somewhere.
The work was due to be completed this month.Before we fall too far down the rabbit hole yet again, this piece of work needs to be completed first.
If you are applying CSM correctly you would not consider the ORR's position as that would influence any risk assessment.
As an example. Network Rails Standards state that for a linespeed above 100MPH the safe lineside clearance for staff is 2M. But if you are correctly applying CSM you would disregard this and risk access what the safe standing distance actually is for that particular project. So just because the ORR have stated their views you would not automatically accept them.
You could do that, but I'm not sure why Merseyrail is a problem as a third rail island as it is self contained and intended to be that way. With regard to safety it could fairly easily be swapped to 750VDC bottom contact.
Rather than me trying to explain the process it's probably better if you read the guidance notes contained within the following:-Right. But my question was more to do with where the measurement of risk comes from when assessing a new project. If you disregard the ORR position and the Rule Book requirements, how do you assess the risk? Presumably there has to be a metric against which you make your assessment.
Pedantically, London Underground is not and never has been third rail.You could do that, but I'm not sure why Merseyrail is a problem as a third rail island as it is self contained and intended to be that way. With regard to safety it could fairly easily be swapped to 750VDC bottom contact.
Merseyrail is no more of an issue being third rail than London Underground is. And indeed it's less of an issue than Metrolink being DC overhead which can't mix with AC overhead.