Nottingham59
Established Member
What are the practical methods for recharging battery-powered trains? In the most straightforward case, the battery train will have a long run under the wires (or on third rail) before reaching a short unelectrified section. This might apply to the Windermere branch, or Matlock after MML electrification.
But most cases will require some other form of power supply to recharge the batteries.
This article reports a short OHLE bus bar at a terminus station:
www.railtech.com
("Charging with Voltap takes place without a socket or plug. Although the point of a battery trains is that it can run on non-electrified lines, it is charged via its pantograph at an overhead line system, which together with a transformer station forms the rapid charging station. However, the rest of a line then does not need to have an overhead line to be operated with electric trains.")
This approach would be simple, but I can see all sorts of problems with unbalanced phases, and a static frequency converter (SFC) would be hugely expensive just to recharge trains at, say, Oban.
Vivarail claim they can recharge 600kWh 3-car train in 10 minutes, using their proprietary system. See here: https://vivarail.co.uk/cop26-battery-train-makes-the-evening-news/ (video) and here https://www.railjournal.com/technology/vivarail-shows-off-battery-train-at-cop26/ ("The three-car former London Underground class 230 D-Train used to demonstrate battery power in Scotland is fitted with six batteries ....Vivarail’s Fast Charge system which can fully recharge the train in 10 minutes.")
I can see that sort of approach working at places like Uckfield, and thus saving the cost and risks of extending third rail electrification.
Ionity super-fast car chargers now being able to deliver 350kW at the kerbside. Would it be feasible to use that technolgy to recharge battery trains at terminating stations like Oban? 350kW would recharge a Vivarail class 230 in half an hour, giving a claimed 100 mile range.
Any thoughts?
But most cases will require some other form of power supply to recharge the batteries.
This article reports a short OHLE bus bar at a terminus station:
Fast charging for battery trains successfully tested in Germany
The rapid charging station for battery trains Voltap has passed its technical baptism of fire. A battery train from Stadler Rail was successfully charged with Voltap, developed by Swiss catenary specialist Furrer + Frey and local utility company Stadtwerke Tübingen. Charging with Voltap takes...
This approach would be simple, but I can see all sorts of problems with unbalanced phases, and a static frequency converter (SFC) would be hugely expensive just to recharge trains at, say, Oban.
Vivarail claim they can recharge 600kWh 3-car train in 10 minutes, using their proprietary system. See here: https://vivarail.co.uk/cop26-battery-train-makes-the-evening-news/ (video) and here https://www.railjournal.com/technology/vivarail-shows-off-battery-train-at-cop26/ ("The three-car former London Underground class 230 D-Train used to demonstrate battery power in Scotland is fitted with six batteries ....Vivarail’s Fast Charge system which can fully recharge the train in 10 minutes.")
I can see that sort of approach working at places like Uckfield, and thus saving the cost and risks of extending third rail electrification.
Ionity super-fast car chargers now being able to deliver 350kW at the kerbside. Would it be feasible to use that technolgy to recharge battery trains at terminating stations like Oban? 350kW would recharge a Vivarail class 230 in half an hour, giving a claimed 100 mile range.
Any thoughts?
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