Expensive? Absolutely!Possible? Yes. Easy? No.
Expensive? Absolutely!Possible? Yes. Easy? No.
No-one is talking easy. As a former resident engineer supervising the construction of new bridges and the rebuilding of old ones for BR in the 1970s, I have some idea of the difficulties involved.Possible? Yes. Easy? No.
It introduces additional weight and technology that is likely to fail when needed. Keep it simple with just tried and tested 25kv.
No. Small batteries involve the least amount of additional technology and complexity of any of the suggested options.
Sorry, gotta disagree there. 3kV just requires an additional tap off of the transformer and a basic A/B switch. Batteries require a whole lot of charging circuitry and DC/DC voltage changing.Small batteries involve the least amount of additional technology and complexity of any of the suggested options.
How small? Batteries in an electric car are not small to propel only a ton.No. Small batteries involve the least amount of additional technology and complexity of any of the suggested options. Second pantographs or 3kV capability or third rail shoes would be entirely useless away from the small sections of track which necessitated them in the first place. Batteries would be useful everywhere, enabling electric trains to do limited self-powered operation anywhere on the network where overhead lines were not active. OHLE will sometimes fail and batteries are the way you can make electric trains able to crawl to the next station, or a level crossing, to simplify evacuation if things can't be put right.
It's not about fitting enough batteries to be able to do DMU diagrams. Instead, it's just enough to get through any common obstacle, like a bridge or tunnel or sensitive track section. That means batteries will become the norm for all electric vehicles. Replacing traditional lead-acid batteries (as are fitted to all passenger rolling stock) with Li-ion cells would get you most of the way there without incurring any extra weight penalty.
I'm going to guess that they'd weigh more than a genset and small fuel tank.How big must batteries be to propel an electric freight loco across the bridge on the few times it would be needed?
For electric freight maybe you could have a battery loco banker for the bridge which would recharge under the wires either side - but I guess you'd stick with a diesel unless the drive to decarbonise was extreme.How big must batteries be to propel an electric freight loco across the bridge on the few times it would be needed?
How would that compare with the weight of a limited clearance pantograph? Presumably each pan has an isolator, but apart from the wire to take the power to the main one, there wouldn't be much extra weight. Certainly no need to maintain a totally different system, although I agree there are wider benefits from having a supply of self-power available. No reason why electric and any other locos can't have a secondary baby pan though.I'm going to guess that they'd weigh more than a genset and small fuel tank.
Yes, a second pan would be lighter, but I still think that standard pantos with dead sections of wire in the tightest clearance sections or reduced voltage is more likely for a pure electric solution - due to the consequence of getting it wrong (failing to swap pantographs).How would that compare with the weight of a limited clearance pantograph? Presumably each pan has an isolator, but apart from the wire to take the power to the main one, there wouldn't be much extra weight.
Practically none and none aren't the same thing.There’s practically no freight over the bridge since SAK opened and of the stuff that does go over like the cement, most goes north via Stirling to avoid the weight limits on this & the Tay bridge. In short, don’t worry about freight
quite so. If the clearance at the diagonal girders can't be achieved then short earthed sections in the 25kv is the way.
I imagine that were this the chosen solution, drivers would be instructed to coast as much as possible and only take power if absolutely necessary. So it should be possible to have the necessary non-conductive (as opposed to earthed) sections as required.The diagonal girders are at frequent intervals, as the videos in #16 show. What's the minimum practicable distance in which you can go from live to earthed to live? Is a neutral section required between live and earthed to avoid shorting out?
Still no reply from NotATrainspottto my question. I assumed he would have an answer.How small? Batteries in an electric car are not small to propel only a ton.
How big must batteries be to propel an electric freight loco across the bridge on the few times it would be needed?
[edit: 2 of] the Helsingor - Helsingborg ferries are now battery powered. I believe the original Diesel engines are still in situ for emergencies, surprisingly http://sailwiththecurrent.com/ saysStill no reply from NotATrainspottto my question. I assumed he would have an answer.
when I would have thought that weight high up was not a good idea. Apparently Li-ion batteries are quite light...640 batteries of 6.5 kWh are installed on top of each ferry along with two deckhouses for transformers, converters and cooling of the batteries. Cables run from the deckhouses to connecting points at each end of the ship, so that the batteries can be quick-charged – to provide the power of 70 electric cars.
Do you seriously think the shipyard naval architects, classification society, flag state safety authority and insurers won’t have given a thought to the affect on stability and seaworthiness? A poster on a speculative thread about the Forth Bridge on a railway forum is pointing out something that hasn’t been considered before? Seriously?I would have thought that weight high up was not a good idea.
The point I was making was that enough batteries to run an 8400T ferry for a crossing are not as heavy as one might expect. I agree that if they were heavy they wouldn't have been allowed to be installed up there.Do you seriously think the shipyard naval architects, classification society, flag state safety authority and insurers won’t have given a thought to the affect on stability and seaworthiness? A poster on a speculative thread about the Forth Bridge on a railway forum is pointing out something that hasn’t been considered before? Seriously?
It does, and it is.We were talking about whether a diesel power-pack would be heavier than a battery equivalent and I though it might illustrate the point (as well as being interesting.)
Looking at the video. Singling the track over the central part of the bridge would increase the distance to the diagonal members. No idea how much of an operational constraint that would be though. (AKA the Hastings line solution, but with a bridge as opposed to narrow tunnels)
EDIT: Just looked at RTT, and it looks far too busy for single track.
It's barely got enough capacity as a dual line.EDIT: Just looked at RTT, and it looks far too busy for single track.
ScotGov needs to commit to wiring the Fife circle. Once committed they will appoint engineering consultants to assess the bridge and work out what needs doing and cost the work. I reckon they have shyed away from Fife because the costs of electrifying the bridge are perceived to be high. We won't know the costs until that engineering assessment is done.The singling comment reminds me that this thread is another one that is going round in circles, but I don't think that is necessarily a problem. It's only 4 months and 225 posts old but newcomers can't really be expected to go back over it all and, who knows, a fresh mind might even suggest a novel solution!
I agree with Snowball that we have probably said all that we can until proper new info becomes available (and if we're bored with it then just stop watching it.)
[edit: 2 of] the Helsingor - Helsingborg ferries are now battery powered. I believe the original Diesel engines are still in situ for emergencies, surprisingly http://sailwiththecurrent.com/ says when I would have thought that weight high up was not a good idea. Apparently Li-ion batteries are quite light...
How small? Batteries in an electric car are not small to propel only a ton.
How big must batteries be to propel an electric freight loco across the bridge on the few times it would be needed?
ScotGov needs to commit to wiring the Fife circle. Once committed they will appoint engineering consultants to assess the bridge and work out what needs doing and cost the work. I reckon they have shyed away from Fife because the costs of electrifying the bridge are perceived to be high. We won't know the costs until that engineering assessment is done.
They refused to make it big enough for all the motor vehicles that need to go across it. Trains as well would have been right out!They just built a new bridge a few miles to the west. Could've taken the opportunity to at least put capacity on it for a double track railway which could have been developed in the future if necessary.
The title of this thread is Forth Bridge, how would you electrify it not how you would avoid electrifying it.Batteries work on multiple units since you can spread the batteries across the entire train. Unlike most other train components, batteries would consist of a very large number of identical small parts, so spreading them around is easy. Therefore I don't see major battery freight operation happening until we see freight vehicles act more like multiple units. Freight is quite a different world than passenger services though, so they won't need to electrify as much as passenger services will. It'll be perfectly possible to fit batteries as standard fit to the standard EMUs ScotRail will use for the majority of passenger services now and in the future.
I suppose that "I wouldn't" is a valid answer to "How would you..?" (though not nearly as much fun!)The title of this thread is Forth Bridge, how would you electrify it not how you would avoid electrifying it.
Sorry, gotta disagree there. 3kV just requires an additional tap off of the transformer and a basic A/B switch. Batteries require a whole lot of charging circuitry and DC/DC voltage changing.
No specific reason why 3kV other than that it's in use on the Continent so it should be easier to find ready-to-go equipment. Any voltage reduction reduces the clearance required, and 3kV seems like a happy medium before conductor thickness starts becoming and issue.Umm why 3kV? Is there any particular reason why that system should be used to electrify the Forth Bridge?