I have some more details that some of you might find interesting about Padiham power station C which was proposed but never built, plus some questions of course.
To cover myself the following details come from file AN155/185 held by the National Archives, Kew and contains public sector information licensed under the Open Government License v3.0 If you are not familiar with it please have a read:
Open Government License v3.0
Proposed in December 1964, was a third power station around the Padiham area, with A and B already generating. This was to be a 2,000 megawatt station and the CEGB (Central Electricity Generating Board) state that it would consume around 4 to 4.5 million tons of coal per annum. To put the size of this proposed station in perspective, I looked at power station B, this had two cooling towers and was a 240 megawatt station, so station C was going to be a monster of power station. Looking at other 2,000 megawatt stations that were built, most seem to have around eight cooling towers.
BR and the CEGB discuss the possibility of train loads of 2,000 tons per journey. To facilitate delivery, the CEGB say they favor a run round loop and deliveries of Yorkshire coal via the Copy Pit route to Padiham via Rose Grove, Burnley rather than Lancashire coal coming in from the west, Blackburn end which they say would be more difficult.
The above details come from a joint BR - CEGB management meeting held at Euston, March 1965. The power station was in the end never built at this location.
Questions please:
What do the CEGB mean when they are talking about supplying the power station using a run round loop? would this be their term for the Merry-Go-Round type of delivery?
2,000 tons per delivery - In another document BR state that the CEGB would require 26.5 ton coal wagons for supplying this power station, that's over 70 full wagons per delivery, is that possible?
Would you need a double header? - Going from Rose Grove to Padiham you have to go down the 1 in 40 bank (1.25 miles) bank, you would need some braking power of perhaps two engines? and then there's the empties to get back up that bank.
Can we learn anything from the 2,000 megawatt power stations that were actually built?
To cover myself the following details come from file AN155/185 held by the National Archives, Kew and contains public sector information licensed under the Open Government License v3.0 If you are not familiar with it please have a read:
Open Government License v3.0
Proposed in December 1964, was a third power station around the Padiham area, with A and B already generating. This was to be a 2,000 megawatt station and the CEGB (Central Electricity Generating Board) state that it would consume around 4 to 4.5 million tons of coal per annum. To put the size of this proposed station in perspective, I looked at power station B, this had two cooling towers and was a 240 megawatt station, so station C was going to be a monster of power station. Looking at other 2,000 megawatt stations that were built, most seem to have around eight cooling towers.
BR and the CEGB discuss the possibility of train loads of 2,000 tons per journey. To facilitate delivery, the CEGB say they favor a run round loop and deliveries of Yorkshire coal via the Copy Pit route to Padiham via Rose Grove, Burnley rather than Lancashire coal coming in from the west, Blackburn end which they say would be more difficult.
The above details come from a joint BR - CEGB management meeting held at Euston, March 1965. The power station was in the end never built at this location.
Questions please:
What do the CEGB mean when they are talking about supplying the power station using a run round loop? would this be their term for the Merry-Go-Round type of delivery?
2,000 tons per delivery - In another document BR state that the CEGB would require 26.5 ton coal wagons for supplying this power station, that's over 70 full wagons per delivery, is that possible?
Would you need a double header? - Going from Rose Grove to Padiham you have to go down the 1 in 40 bank (1.25 miles) bank, you would need some braking power of perhaps two engines? and then there's the empties to get back up that bank.
Can we learn anything from the 2,000 megawatt power stations that were actually built?