brianthegiant
Member
- Joined
- 12 May 2010
- Messages
- 588
I'm not at all convinced about solar panels on train roofs, at any one time at least half the roof wouldn't be facing south. Not to mention shading from tunnels, & other structures. As a rule of thumb you get about 100W max per square metre of panels. So you need a significant area to get a significant amount of power. Much more sensible to put solar panels on all the Station roofs which are south facing +/- 90deg, providing they're not significantly shaded by trees/buildings. Blackfriars would be a good case study.
On the battery front, my experience is that batteries are expensive to operate, given the limited cycle life. This project will be useful to get some robust costings. A key question is whether you have enough dwell time at stations to keep the batteries topped up. Furthermore, what would be the cost of installing a network connection and 11kV:25kV transformer for a short section of OHL & whether the local 11kV network would have enough capacity. If you end up needing significant lengths of new HV underground/overhead cables for supply, then combined with the cost of batteries & inverter/chargers the cost saving against electrification start to become marginalised.
Furthermore, even if the battery system is designed with a significant energy storage contingency to allow for delays, battery ageing, etc, nonetheless you are adding complexity to a critical system, so there are more failure modes and lower reliability.
On the battery front, my experience is that batteries are expensive to operate, given the limited cycle life. This project will be useful to get some robust costings. A key question is whether you have enough dwell time at stations to keep the batteries topped up. Furthermore, what would be the cost of installing a network connection and 11kV:25kV transformer for a short section of OHL & whether the local 11kV network would have enough capacity. If you end up needing significant lengths of new HV underground/overhead cables for supply, then combined with the cost of batteries & inverter/chargers the cost saving against electrification start to become marginalised.
Furthermore, even if the battery system is designed with a significant energy storage contingency to allow for delays, battery ageing, etc, nonetheless you are adding complexity to a critical system, so there are more failure modes and lower reliability.
Last edited:
