Beeching Reversal – A New Station At Waverley In Sheffield
This is one of the Beeching Reversal projects that the Government and Network Rail are proposing to reverse some of the Beeching cuts.
In July 2019, I covered this new station in Sheffield Region Transport Plan 2019 – A New Tram-Train Route To A New Station At Waverley.
Note that to avoid confusion, I now refer to this station as Sheffield Waverley station.
This was my conclusion in the July 2019 post.
Why shouldn’t Sheffield have an advanced tram-train system to serve the Advanced Manufacturing Park?
I feel the service should be as follows.
-
- It should be terminated in a loop around the Waverley area and the Advanced Manufacturing Park.
- In the West it could terminate in Sheffield station or perhaps pass through and terminate in the West of the City.
- The service could be run using battery electric tram-trains, similar to the Class 398 tram-trains, that will be used on the South Wales Metro.
I don’t think that the engineering will be very challenging.
I shall be adding to this post.
Northern Line Extension Around Kennington Station – 10th July 2020
I took a trip to Kennington this afternoon to look at the sites of the Northern Line Extension around Kennington station.
These pictures show Kennington station.
It appears work is still proceeding inside the station to complete the extra passageways.
This Google Map shows the station.
As the hoardings seen in Braganza Street were not there this afternoon, have the builders finished the major works at the station?
I then walked to the site in Kennington Park, where there is a construction site, where they are building a headhouse.
This page on the TfL web site gives more details.
I took these pictures of the site today.
There does seem to be work to do, but I’ve no idea how much.
This Google Map shows the site.
If the shaft under the headhouse, is covered by the green cover, it’s not going to be enormous.
Finally, I walked to Kennington Green, where they are building another headhouse.
This page on the TfL web site gives more details.
I took these pictures of the site today.
It looks like the new concrete building on the far side of site will be clad in bricks to fit in with the houses.
This Google Map shows the site.
It does appear to be a very different design to the other site.
But there is still some time to go.
Beeching Reversal – Reinstatement Of The Beverley And York Rail Line
This is one of the Beeching Reversal projects that the Government and Network Rail are proposing to reverse some of the Beeching cuts.
The York And Beverley Line does what it says in the name.
A section in the Wikipedia entry is entitled Re-Opening Proposals and the treatment of the trackbed after closure would appear to be a case study in how not to mothball a railway.
- The original route has been built on in several places at Huntingdon, New Earswick, Pocklington and Stamford Bridge.
- A new route will have to be built to connect to the York and Scarborough Line at Haxby.
- There may also be problems at Beverley.
The only positive thing I can see, is that York City Council, want to re-open Haxby station. If this station were to be re-opened with a future-proofed design that might help in the wider scheme of reopening the Beverley and York Line.
This Google Map shows the original location of Haxby station.
Note.
- There is a dreaded level crossing in the middle of the village, that typically has around two trains per hour (tph)
- The road going to the West at the top of the map, is called Station Road, which is a bit of a giveaway.
- The building on the triangular site is called Station garage.
- Some reports on the Internet say that allotments will be turned into car parks.
- According to Wikipedia 22,000 people live within three miles of the station site.
The station site appears to be hemmed in by housing and comments from readers on one report are complaining about car parking being a problem an definitely don’t want the station.
Wikipedia says this about the proposed service on the Beverley and York Line.
The report recommended reinstating a service from Hull via Beverley, Market Weighton, Stamford Bridge and Pocklington connecting to the York to Scarborough Line at Haxby, on a double track line with a frequency of 2 trains per hour, with intermediate stations only at Market Weighton, Pocklington and Stamford Bridge. The estimate journey time was under 1 hour.
As the Beverley and York Line can’t join the York and Scarborough Line in the middle of Haxby, would it join North or South of the town?
Joining to the North would allow the Beverley trains to call at Haxby, but that would mean the level crossing was busy with six tph.
This Google Map shows the countryside between Haxby in the North and Earswick in the South.
Note.
- The York and Scarborough Line going through the centre of Haxby and then passing down the West side of the light brown fields.
- York is to the South and Scarborough is to the North.
I wonder, if the Beverley and York Line could branch to the East here and skirt to the North of Earswick before continuing to Pocklington for Beverley.
Perhaps, a Park-and-Ride station could be situated, where the railway and the road called Landing Lane cross?
At Beverley, this Google Map shows how the Beverley and York Line connects to the station.
Note.
- Beverley station at the bottom of the map.
- The Hull and Scarborough running North-South through the station.
The line divides by Beverley Rugby Football Club, with the trackbed of the Beverley and York Line going off in the North-Westerly direction.
This seems a lot easier than at the York end of the route.
I have flown my virtial helicopter over much of the route between Beverley and York, and the trackbed is visible but missing in places, where construction has taken place.
Would The Route Be Single Or Double-Track?
The plans call for double track, but would it be necessary?
- There will only be two tph, that will take under an hour.
- No freight trains will use the line.
- The route is 32 miles long.
I suspect a single track would suffice, with a passing loop at Market Weighton station.
Should The Line Be Electrified?
I wouldn’t electrify the whole line, but I would electrify the following.
- Hull and Beverley, so that battery trains to and from London could top up their batteries.
- Haxby and York, so that battery trains to and from Scarborough could top up their batteries.
These two short stretches of electrification would allow battery electric operation between Hull and York, trains could charge their batteries at either end of the route.
Electrification Between Hull And Beverley
Consider.
- Hull Trains extend their London and Hull services to Beverley.
- Hull and Beverley are just over eight miles apart.
- Trains to and from London Kings Cross use the electrification on the East Coast Main Line to the South of Temple Hirst Junction.
- Hull and Temple Hirst Junction are thirty-six miles apart.
- Hull Trains and LNER use Hitachi Class 800 or Class 802 electro-diesel trains on services between London Kings Cross and Hull.
Hitachi’s proposed battery-electric conversion of these trains, would have a range of 56 miles, according to this infographic.
I have flown my helicopter along the route and counted the following.
- Level crossings – 5
- Modern road bridges – 5
- Footbridges – 5
- Other bridges – 5
- Stations – 1
Nothing looked too challenging.
In my view electrification between Hull and Beverley and at convenient platforms at both stations, would be a simple way of decarbonising rail travel between London and Hull.
If this electrification were to be installed, distances from the electrification between Hull and Beverley, these would be the distances to be covered on battery power to various places.
- Bridlington – 23 miles
- Doncaster via Goole – 41 miles
- Leeds – 52 miles
- Neville Hill Depot – 49 miles
- Scarborough – 45 miles
- York – 52 miles
Note.
- All of these places would be in range of a fully-charged Hitachi battery electric train running to and from Hull.
- Of the destinations, only Bridlington and Scarborough, is not a fully-electrified station.
- One of the prerational problems in the area, is that due to a lack of electrification to the East of Neville Hall Depot, electric trains from York and Hull have difficulty reaching the depot. Trains with a battery capability won’t have this problem.
- Hull and Beverley and a lot of stations in the area, would only be served by electric trains, with a battery capability.
There would be a large decrease in pollution and emissions caused by passenger trains in the area.
Electrification Between Haxby And York
Consider.
- York and Haxby are 4 miles apart.
- York and Scarborough are 42 miles apart.
- York and Beverley are 32 miles apart.
Note that unlike at Beverley, there is no need to electrify the end of the route, as trains can be charged in the turnround at York.
With a charging facility at Scarborough, the Class 802 trains of TransPennine Express could work this route if fitted with batteries.
Could Lightweight Electrification Be Used?
Electrification gantries like these have been proposed for routes, where the heavy main-line gantries would be too intrusive.
They could have a place in the rebuilding of lines like Beverley and York.
Trains Between York And Beverley
The UK’s railways need to be decarbonised before 2040.
As a train delivered today, would probably last forty years, I think it would be prudent to only introduce zero-carbon trains to the network, where they are able to run the proposed services.
There is no doubt in my mind, that all these local services in East Yorkshire could be run using battery-electric trains with a 56 mile range.
- Hull and Doncaster
- Hull and Leeds
- Hull and Neville Hill Depot
- Hull and Scarborough
- Hull and York via Beverley and Market Weighton
- Hull and York via Selby
- York and Scarborough
The only electrification needed would be as follows.
Electrification between Hull and Beverley.
Electrification of some platforms at Beverley and Hull stations.
Some form of charging at Scarborough.
Charging may also be needed at Bridlington station.
The trains needed for the route seem to fit Hitachi’s specification well and a Class 385 train to the following specification, would do a highly capable job.
- Three or four-cars.
- Batteries for a 56 mile range.
- 90-100 mph operating speed.
I’m also sure that Bombardier, CAF and Stadler could also provide a suitable train.
Could Tram-Trains Be Used?
I feel that they could be used successfully and might enable cost savings on the substantial rebuilding of the route needed.
- Lighter weight structures.
- Single track with passing places.
- Tramway electrification or battery.
- Less vidual intrusion.
- The service could also have more stops.
Perhaps too, it could go walkabout in Hull City Centre to take passengers to and from Hull station.
Conclusion
It is rebuilding the tracks between Beverley and York, that will be difficult in the reopening of this line, which with hindsight should have not been vandalised by British Rail.
But even, if the Beverley and York Line is not re-opened, it does look that if Beverley and Hull were to be electrified, it would enable a network of battery electric zero-carbon trains in East Yorkshire and allow battery electric trains to run between Kings Cross and Hull.
South Wales Metro Railway Works Imminent
The title of this post, is the same as that of this article on Rail Technology Magazine.
Work starts on the third of August and is described in this sentence,
TfW is now starting to build the South Wales Metro which will see major infrastructure works including the electrification of over 170km of track mostly with overhead lines, station and signalling upgrades and the construction of at least five new stations.
It will be one of the most innovative electrification projects ever performed in the UK, as it uses discontinuous electrification.
I explained discontinuous electrification in More On Discontinuous Electrification In South Wales, where I said this.
In the July 2018 Edition of Modern Railways, there is an article entitled KeolisAmey Wins Welsh Franchise.
This is said about the electrification on the South Wales Metro.
KeolisAmey has opted to use continuous overhead line equipment but discontinuous power on the Core Valley Lnes (CVL), meaning isolated OLE will be installed under bridges. On reaching a permanently earthed section, trains will automatically switch from 25 KVAC overhead to on-board battery supply, but the pantograph will remain in contact with the overhead cable, ready to collect power after the section. The company believes this method of reducing costly and disruptive engineering works could revive the business cases of cancelled electrification schemes. Hopes of having money left over for other schemes rest partly on this choice of technology.
Other points made include.
-
- A total of 172 km. of track will be electrified.
- The system is used elsewhere, but not in the UK.
- Disruptive engineering works will be avoided on fifty-five structures.
- Between Radyr and Ninian Park stations is also proposed for electrification.
Nothing is said about only electrifying the uphill track, which surely could be a way of reducing costs.
I wrote the last sentence, as surely coming down the hills, the trains can be powered by Newton’s friend.
The New Stations
This article on Business Live, gives the list of new stations and their completion dates.
- Crwys Road – End of 2022
- Loudoun Square – End of 2023
- Cardiff Bay – End of 2023
- Treforest Estate – End of 2025
- Gabalfa – 2028
If the builders crack on as they did at Horden station, I wouldn’t be surprised to see those dates achieved, with time to spare.
Electro-Diesel Tram-Train Order Expanded To Support Service Increase
The title of this post, is the same as that of this article on Railway Gazette.
This is the introductory paragraph.
National passenger operator MÁV-Start has exercised an option for Stadler’s Valencia plant to supply a further four Citylink electro-diesel tram-trains for the route being developed to link Hódmezővásárhely with Szeged.
The reason, I am posting this, is that I feel the use of diesel tram-trains may have applications in this country.
- The Class 399 tram-trains in Sheffield and the Class 398 tram-trains ordered for the South Wales Metro are both members of the Citylink family, that were built or will be built in Stadler’s Valencia plant.
- The Class 398 tram-trains will have batteries to extend the route on routes without electrification.
Perhaps, if they ran on bio-diesel, they may have applications, where electrification would be difficult or inappropriate and the distance is too long for a Citylink with batteries.
Electrifying Wales
I would not be surprised to learn that Wales wants to decarbonise their railways.
At present, Wales only has the following electrified railways either in operation or under construction.
- The South Wales Main Line between the Severn Tunnel and Cardiff.
- The South Wales Metro based on local railways around Cardiff and Newport is being created and will be run by electric trains.
There is no more electrification planned in the future.
Hitachi’s Specification For Battery Electric Trains
Recently, Hitachi have released this infographic for their Regional Battery Train.
This gives all the information about the train and a definitive range of 90 km or 56 miles.
The Welsh Rail Network
If you look at the network of services that are run by Transport for Wales Rail Services, they connect a series of hub stations.
Major hubs include the following stations.
- Cardiff Central – Electrified
- Chester
- Hereford
- Shrewsbury
- Swansea
Smaller hubs and termini include the following stations.
- Aberystwyth
- Birmingham International – Electrified
- Birmingham New Street – Electrified
- Blaenau Ffestiniog
- Carmarthen
- Crewe – Electrified
- Fishguard Harbour
- Hereford
- Holyhead
- Llandudno Junction
- Manchester Airport – Electrified
- Manchester Piccadilly – Electrified
- Machynlleth
- Milford Haven
- Newport – Electrified
- Pembroke Dock
Running Welsh Routes With Electric Trains
These routes make up the Welsh rail network.
Chester And Crewe
Consider.
- The route between Chester and Crewe is without electrification.
- Crewe and Chester are 21 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Chester and Crewe with full batteries, that it will be possible to run between Chester and Crewe stations.
Chester And Holyhead via Llandudno Junction
Consider.
- All services between Llandudno Junction and England call at Chester.
- All services running to and from Holyhead call at Llandudno Junction.
- The route between Chester and Holyhead is without electrification.
- Chester and Llandudno Junction are 54 miles apart.
- Llandudno Junction and Holyhead are 40 miles apart.
I believe that if a battery-electric train with a range of 56 miles can leave Chester, Llandudno Junction and Holyhead with full batteries, that it will be possible to run between Chester and Holyhead stations.
Chester And Liverpool Lime Street
Consider.
- The route between Runcorn and Liverpool Lime Street is electrified.
- The route between Chester and Runcorn is without electrification.
- Chester and Runcorn are 14 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Chester and Runcorn with full batteries, that it will be possible to run between Chester and Liverpool Lime Street stations.
Chester And Manchester Airport
Consider.
- The route between Warrington Bank Quay and Manchester Airport is electrified.
- The route between Chester and Warrington Bank Quay is without electrification.
- Chester and Warrington Bank Quay are 18 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Chester and Warrington Bank Quay with full batteries, that it will be possible to run between Chester and Manchester Airport stations.
Chester And Shrewsbury
Consider.
- The route between Chester and Shrewsbury is without electrification.
- Chester and Shrewsbury are 42 miles apart.
I believe that if a battery-electric train with a range of 56 miles, can leave Shrewsbury and Chester with full batteries, that it will be possible to run between Chester and Shrewsbury stations.
Llandudno And Blaenau Ffestiniog
Consider.
- The route between Llandudno and Blaenau Ffestiniog is without electrification.
- Llandudno and Blaenau Ffestiniog are 31 miles apart.
I believe that if a battery-electric train with a range of 56 miles, can leave Llandudno and Blaenau Ffestiniog with full batteries, that it will be possible to run between Llandudno and Blaenau Ffestiniog stations.
Machynlleth And Aberystwyth
Consider.
- The route between Machynlleth and Aberystwyth is without electrification.
- Machynlleth and Aberystwyth are 21 miles apart.
I believe that if a battery-electric train with a range of 56 miles, can leave Machynlleth and Aberystwyth with full batteries, that it will be possible to run between Machynlleth and Aberystwyth stations.
Machynlleth And Pwllheli
Consider.
- The route between Machynlleth and Pwllheli is without electrification.
- Machynlleth and Pwllheli are 58 miles apart.
I believe that if a battery-electric train with a range of upwards of 58 miles, can leave Machynlleth and Pwllheli with full batteries, that it will be possible to run between Machynlleth and Pwllheli stations.
Machynlleth And Shrewsbury
Consider.
- The route between Machynlleth and Shrewsbury is without electrification.
- Machynlleth and Shrewsbury are 61 miles apart.
I believe that if a battery-electric train with a range of upwards of 61 miles, can leave Machynlleth and Shrewsbury with full batteries, that it will be possible to run between Machynlleth and Shrewsbury stations.
Shrewsbury and Birmingham International
Consider.
- The route between Birmingham International and Wolverhampton is electrified.
- The route between Shrewsbury and Wolverhampton is without electrification.
- Shrewsbury and Wolverhampton are 30 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Shrewsbury and Wolverhampton with full batteries, that it will be possible to run between Shrewsbury and Birmingham International stations.
Shrewsbury And Cardiff Central via Hereford
Consider.
- All services between Cardiff Central and Shrewsbury call at Hereford.
- The route between Cardiff Central and Newport is electrified.
- The route between Newport and Shrewsbury is without electrification.
- Shrewsbury and Hereford are 51 miles apart.
- Hereford and Newport are 44 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Shrewsbury, Hereford and Newport with full batteries, that it will be possible to run between Shrewsbury and Cardiff Central stations.
Shrewsbury And Crewe
- The route between Shrewsbury and Crewe is without electrification.
- Shrewsbury and Crewe are 33 miles apart.
I believe that if a battery-electric train with a range of upwards of 61 miles, can leave Shrewsbury and Crewe with full batteries, that it will be possible to run between Shrewsbury and Crewe stations.
Shrewsbury and Swansea
Consider.
- The Heart of Wales Line between Shrewsbury and Swansea is without electrification.
- Shrewsbury and Swansea are 122 miles apart.
- Trains cross at Llandrindod and wait for up to eleven minutes, so there could be time for a charge.
- Shrewsbury and Llandrindod are 52 miles apart.
- Swansea and Llandrindod are 70 miles apart.
It appears that another charging station between Swansea and Llandrindod is needed
I believe that if a battery-electric train, with a range of 56 miles, can leave Shrewsbury, Swansea and the other charging station, with full batteries, that it will be possible to run between Shrewsbury and Swansea stations.
Swansea And Cardiff Central
Consider.
- The route between Swansea and Cardiff Central is without electrification.
- Swansea and Cardiff Central are 46 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Swansea and Cardiff Central with full batteries, that it will be possible to run between Swansea and Cardiff Central stations.
Swansea And Carmarthen
Consider.
- The route between Swansea and Carmarthen is without electrification.
- Swansea and Carmarthen are 31 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Swansea and Carmarthen with full batteries, that it will be possible to run between Swansea and Carmarthen stations.
Swansea And Fishguard Harbour
Consider.
- The route between Swansea and Fishguard Harbour is without electrification.
- Swansea and Fishguard Harbour are 73 miles apart.
- Tramins could top up the batteries during the reverse at Carmathen.
- Swansea and Carmarthen are 31 miles apart.
- Carmarthen and Fishguard Harbour are 42 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Swansea, Carmathen and Fishguard Harbour with full batteries, that it will be possible to run between Swansea and Fishguard Harbour stations.
Swansea And Milford Haven
Consider.
- The route between Swansea and Milford Haven is without electrification.
- Swansea and Milford Haven are 72 miles apart.
- Tramins could top up the batteries during the reverse at Carmathen.
- Swansea and Carmarthen are 31 miles apart.
- Carmarthen and Milford Haven are 41 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Swansea, Carmathen and Milford Haven with full batteries, that it will be possible to run between Swansea and Milford Haven stations.
Swansea And Pembroke Dock
Consider.
- The route between Swansea and Pembroke Dock is without electrification.
- Swansea and Pembroke Dock are 73 miles apart.
- Tramins could top up the batteries during the reverse at Carmathen.
- Swansea and Carmarthen are 31 miles apart.
- Carmarthen and Pembroke Dock are 42 miles apart.
I believe that if a battery-electric train, with a range of 56 miles, can leave Swansea, Carmathen and Pembroke Dock with full batteries, that it will be possible to run between Swansea and Pembroke Dock stations.
Other Routes
I have not covered these routes.
- Borderlands Line
- Cardiff Valley Lines, that will be part of the South Wales Metro
- Routes on the electrified South Wales Main Line, that are to the East of Cardiff.
The first will run between Chester and the electrified Merseyrail system and the others will be electrified, except for short stretches.
Stations Where Trains Would Be Charged
These stations will need charging facilities.
Aberystwyth
Aberystwyth station only has a single terminal platform.
I’ve not been to the station, but looking at pictures on the Internet, I suspect that fitting a charging facility into the station, wouldn’t be the most difficult of engineering problems.
Birmingham International
Birmingham International station is fully-electrified and ready for battery-electric trains.
Blaenau Fflestiniog
Blaenau Ffestiniog station has a single terminal platform.
My comments would be similar to what, I said for Aberystwyth station. I would hope a standard solution can be developed.
Cardiff
Cardiff station is fully-electrified and ready for battery-electric trains.
Chester
Chester station has two through platforms and one bay platform, that are used by Trains for Wales.
- The through platforms are bi-directional.
- The bay platform is used by services from Liverpool Lime Street and Manchester Airport and Piccadilly.
- The station is a terminus for Merseyrail’s electric trains, which use 750 VDC third-rail electrification.
- Some through services stop for up to seven minutes in the station.
This Google Map shows the station.
There is plenty of space.
The simplest way to charge trains at Chester would be to electrify the two through platforms 3 and 4 and the bay platform 1.
I would use 750 VDC third-rail, rather than 25 KVAC overhead electrification.
- I’m an engineer, who deals in scientifically-correct solutions, not politically-correct ones, devised by jobsworths.
- Maintenance staff at the station will be familiar with the technology.
- Station staff and passengers will know about the dangers of third-rail electrification.
- Trains connect and disconnect automatically to third-rail electrification.
- Trains don’t have to stop to connect and disconnect, so passing trains can be topped-up.
- Hitachi with the Class 395 train and Alstom with the Class 373 train, have shown even trains capable of 140 mph can be fitted with third-rail shoes to work safely at slower speeds on lines electrified using third-rail.
- Modern control systems can control the electricity to the third-rail, so it is only switched on, when the train completes the circuit.
I have a vague recollection, that there is an avoiding line at Chester station, so trains can go straight through. Perhaps that should be electrified too.
Carmarthen
Carmarthen station is a two platform station, with a rather unusual layout, that I wrote about in Changing Trains At Carmarthen Station.
I took these pictures when I passed through in 2016.
Note the unusual step-free crossing of the tracks.
This Google Map shows the layout at the station.
I believe it is another station, where third-rail electrification could be the solution.
- Most trains seem to reverse at the station, which gives time for a full charge.
- Others terminate here.
but would they still allow passengers to cross the line as they do now, whilst trains are being charged?
Crewe
Crewe station is fully-electrified.
- Trains for Wales seem to use Platform 6 for through trains and the bay Platform 9 for terminating trains.
- Both platforms appear to be electrified.
- Terminating trains appear to wait at least 9-11 minutes before leaving.
It does appear that Crewe station is ready for battery-electric trains.
Fishguard Harbour
Fishguard Harbour station only has a single terminal platform.
My comments would be similar to what, I said for Aberystwyth station. I would hope a standard solution can be developed.
Hereford
Hereford station has four through platforms.
This Google Map shows the station.
There is plenty of space.
As with Chester, I would electrify this station with 750 VDC third-rail equipment.
But the electrification wouldn’t be just for train services in Wales.
- West Midlands Trains, run an hourly service to Birmingham New Street and there is only a forty-one mile gap in the electrification between Hereford and Bromsgrove.
- Great Western Railway’s service to London, has a massive ninety-six mile run to the electrification at Didcot Junction, which could be bridged by installing charging facilities at Worcestershire Parkway and/or Honeybourne stations.
Both services have generous turnround times at Hereford, so would be able to leave fully-charged.
Distances from Hereford station are as follows.
- Abergavenny – 24 miles
- Bromsgrove – 41 miles
- Great Malvern – 21 miles
- Honeybourne – 48 miles
- Ludlow – 13 miles
- Newport – 44 miles
- Shrewsbury – 51 miles
- Worcester Parkway – 33 miles
Hereford station could be a serious battery-electric train hub.
Holyhead
Holyhead station has three terminals platforms.
My comments would be similar to what, I said for Aberystwyth station. I would hope a standard solution can be developed.
Liverpool Lime Street
Liverpool Lime Street station is fully-electrified and ready for battery-electric trains.
Llandrindod
Llandrindod station has two through platforms.
I took these pictures at the station as I passed through in 2016.
The Heart of Wales Line is certainly a route, that would benefit from larger trains. Zero-carbon battery-electric trains would surely fit well in the area.
This Google Map shows the station.
It would appear that, it is another station, that could be fitted with third-rail electrification to charge the trains.
Distances from Llandrindod station are as follows.
- Shrewsbury – 52 miles
- Llandovery – 27 miles
- Llanelli – 59 miles
- Swansea – 70 miles
It would appear that a second station with charging facilities or bigger batteries are needed.
Llandudno Junction
Llandudno Junction station has four platforms.
This Google Map shows the station.
There is plenty of space.
As at Chester, the simple solution would be to electrify the platforms used by trains, that will need charging.
Butb there may also be a wider plan.
Llandudno Junction station is at the Western end of a string of five closely-spaced stations with Prestatyn station in the East.
- Llandudno Junction and Prestatyn are eight miles apart.
- Trains take twenty-three minutes to pass through this section.
- Some trains do a detour to Llandudno station before continuing.
- For part of the route, the railway lies between the dual-carriageway A55 road and the sea.
So why not electrify this section of railway between Llandudno Junction and Prestatyn stations?
- Either 750 VDC this-rail or 25 KVAC overhead electrification could be used.
- Prestatyn and Chester are 46 miles apart.
- Llandudno Junction and Holyhead are 40 miles apart.
If third-rail electrification were to be used, it might be advantageous to electrify to Llandudno station.
- It would be less intrusive.
- It would be quieter in an urban area.
- It would give the trains to Blaenau Ffestiniog trains a good charge.
But above all third-rail electrification might cost a bit less and cause less disruption to install.
Machynlleth
Machynlleth station is where the Aberystwyth and Pwllheli services split and join.
This Google Map shows the station.
Consider.
- There is a train depot by the station.
- Will there be a good power supply at the station to charge the trains?
- Machnylleth and Pwllhelli are 58 miles apart.
- Machynlleth and Shrewsbury are 61 miles apart.
I think that Machynlleth might be pushing things too far, without extra stations with charging facilities.
One solution might be to develop the Riding Sunbeams concept and electrify the route between Newtown and Dovey Junction via Machynlleth, using third-rail technology powered-by solar or wind power.
Another solution would be batteries with a larger capacity.
Manchester Airport
Manchester Airport station is fully-electrified and ready for battery-electric trains.
Manchester Piccadilly
Manchester Piccadilly station is fully-electrified and ready for battery-electric trains.
Milford Haven
Milford Haven station only has a single terminal platform.
My comments would be similar to what, I said for Aberystwyth station. I would hope a standard solution can be developed.
Pembroke Dock
Pembroke Dock station only has a single terminal platform.
My comments would be similar to what, I said for Aberystwyth station. I would hope a standard solution can be developed.
Pwllheli
Pwhelli station is a only has a single terminal platform.
This Google Map shows the location of the station.
The stsation is at the North West corner of the bay.
My first reaction, when I saw this was that I have to go.
So I took a closer look at the station instead.
I suspect that fitting a charging facility into the station, wouldn’t be the most difficult of engineering problems. Although, there might be a problem getting a good enough connection to the National Grid.
Shewsbury
Shrewsbury station is a five-platform station.
This Google Map shows the station’s unusual location over the River Severn.
It must be one of few stations in the world, where trains enter the station from three different directions.
- From Crewe and Chester to the North.
- From Hereford and Wales to the South.
- From Birmingham and Wolverhampton in the East.
Adding electrification to all or selected platforms should allow trains to recharge and be on their way.
- Under current timetables, dwell times in Shrewsbury are up to eight minutes.
- I would suspect the train times could be adjusted, so that trains left the station with full batteries.
With battery-electric services to Aberystwyth, Birmingham International, Birmingham New Street, Cardiff Central, Chester, Crewe, Hereford, Holyhead, London Euston, Manchester, Pwllheli and Swansea, it will be a very important station.
Swansea
Swansea station has four terminal platforms.
A charging facility could be added to an appropriate number of platforms.
Or perhaps, the last few miles of track into the station should be electrified, so trains could charge on the way in, charge in the station and charge on the way out.
Third Rail Electrification
I have suggested in this post, that 750 VDC third-rail electrification could be used in several places.
I will repeat what I said earlier, when discussing Chester station.
- I’m an engineer, who deals in scientifically-correct solutions, not politically-correct ones, devised by jobsworths.
- Maintenance staff at the station will be familiar with the technology.
- Station staff and passengers will know about the dangers of third-rail electrification.
- Trains connect and disconnect automatically to third-rail electrification.
- Trains don’t have to stop to connect and disconnect, so passing trains can be topped-up.
- Hitachi with the Class 395 train and Alstom with the Class 373 train, have shown even trains capable of 140 mph can be fitted with third-rail shoes to work safely at slower speeds on lines electrified using third-rail.
- Modern control systems can control the electricity to the third-rail, so it is only switched on, when the train completes the circuit.
Third-rail electrification should be seriously considered.
A Standardised Terminal Solution
In this post, I mentioned that the following stations could be powered by a scandalised solution, as they are all one platform, terminal stations.
- Aberystwyth
- Blaenau Ffestiniog
- Fishguard Harbour
- Holyhead
- Milford Haven
- Pembroke Dock
- Pwllheli
The system might also be applicable at Carmarthen and Swansea.
My view is that Vivarail’s Fast Track charging based on third-rail technology would be ideal. I discussed this technology in Vivarail Unveils Fast Charging System For Class 230 Battery Trains.
Conclusion
With a bit of ingenuity, all train services run by Transport for Wales, can be run with battery-electric trains.
Route Selected For Cambridge Metro Link Between New A1307 Travel Hub And Biomedical Campus
The title of this post is the same as that of this article on the Haverhill Echo.
This Google Map shows the Fourwentways intersection between the A1307 and A11 roads, where the travel hub will be created.
The travel hub will be South-West of the roundabout, which I know well, as it was only a few miles from where I lived.
It will improve the bus connection between Haverhill and the Biomedical Campus and the City of Cambridge.
It would appear that the Stour Valley Railway, is being recreated by extending the Cambridgeshire Busway.
The closure of the Stour Valley Railway in 1967, was one of the most ill-judged of the Beeching closures, that were solidly backed by the government of Harold Wilson, who believed that everyone should have their own car and that railways wouldn’t be needed. They also believed that all goods should go by truck. Is that what you get, when your Transport Secretary is an ex-lorry driver and a former boss of the lorry-drivers trade union?
We now have a Government backing these two projects.
- The rebuilding of the Varsity Line between Oxford and Cambridge, which Beeching recommended for retention, but Wilson still closed.
- The extension of the Cambridgeshire Busway to Haverhill.
As with so many projects around the country, all these totally unjustified cuts are being reversed.
But these railways should never been closed in the first place.



















































