Sometimes when construction shafts are infilled or capped the locations are later lost. Probably the most horrible consequence of this was the Swinton tunnel collapse.
http://www.railwaysarchive.co.uk/doclisting.php?&event=475&submit=go
The Severn rail tunnel is actually fed with positive pressure air at Sudbrook shaft to clear the tunnel as any shafts mid tunnel would be in the estuary!
Syd.
They did try one, it didn't work!
(I'm being factious, I know that they accidentaly dug through into the Severn during construction, for the pedants out there).
Speaking of shafts in tunnels - anyone know Kilsby tunnel on the WCML?? It seems to have been built in at least 3 seperate chunks. The air shafts are actually wider than the tunnel itself. Why would it have been built that way??
I don't know for sure, but I've always assumed that as it's a long tunnel, and very early in terms of railway development, they may have felt they needed wide shafts for ventilation purposes. Or maybe they weren't 100% confident about their construction techniques and thought that having the shaft walls outside the tunnel walls would make things a bit safer.
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After I'd posted what I'd written yesterday I remembered that in addition to the large shafts in Kilsby Tunnel there are several smaller ones. That tends to invalidate the second sentence of my previous post.
I've looked on Google Earth, where it appears that the smaller shafts may have been capped, though I'm not 100% sure.
Maybe the large shafts were the ventilation shafts, and the smaller ones a series of access points for tunnelers along the route, dividing the work on a long tunnel into shorter sections.
I first travelled through Kilsby in 1958, and remember being surprised then at the size of the larger shafts. My recollection, which may be wrong, is that at that time you could see light coming down the smaller ones as well. I haven't been through it recently.
My understanding - and I have no source for this other than 'someone told me once' (but that someone was an engineer on the line in question) - is:
In the early days, rails were routinely turned to even out wear on the gauge face, ie the bit the wheel flanges can touch. This was before the mechanics of wheel conicity etc were understood, when rail wear was much greater than it was a few decades later. So as well as being used as construction access, the big shafts (diameter just over 60ft?) were used to shorten the distance that rails had to be moved to to enable turning.
[The] great ventilation shafts (and 10 smaller ones, which aren’t as pretty, and not listed) helped reassure nervous Victorian train travellers that they wouldn’t be choked to death by smoke contained with the tunnel, by allowing the smoke to escape upwards and outwards. The Victorians were both fascinated and terrified by train travel, which really was a brand new technology to them, and one they didn’t really understand.
Two things the shafts were built in 1838, and rails did not get to 60'-0" long until ~1890. Also you would not be very popular with your gang if you made them carry a rail several hundred yards to a shaft, dismantle the signal that stood there, turn the rail, re-erect the signal and carry the rail back again. When you could get the same effect by carrying the rail 4'-8 1/2" and transposing it. I think the reason for the large shafts is to give room to work past the pumps needed to keep the tunnel dry during construction. As the pump would need to be at track level as a surface mounted pump would be limited to sucking water up by about 32'.
Here's my 3 penny's worth!
If they were using explosives, as they progressed maybe a shaft to cause a through draft to vent the choking poisoness fumes? You can light a fire underneath the shaft to force a draft.
Here's another possible explanation (which I can't claim as my own):
This tunnel was the longest ever, at the time.
Standedge tunnel doesn't have any shafts because the railway tunnel is connected to the canal tunnel (which does have shafts) with frequent side adits, so the ventilation come from the canal tunnel through these into the railway tunnel.