OVS Flatbottom
Member
In 1980 the 1500V DC electrification system was indeed technically obsolete.
There might be two reasons, though :
1) if the line to electrify has long underground urban sections - at that time it was still feared that 25 kV AC electrification in tunnels below urban areas might induce unacceptable levels of electromagnetic perturbations. This was still feared when SNCF did RER E underground 25 kV electrification between Magenta and Haussmann Saint Lazare. All other underground lines before that were 1500 V.
2) AC substations take power between two phases of the power grid and therefore create a large non symmetrical load. The power grid must be extremely solid in order to accept that. Possibly Ireland, which is not a very industrial country, does not have a very solid power grid, capable of that. This problem is often encountered when electrifying railway lines in third world countries (I do not pretend that Ireland is third world, just that the absence of heavy industry might be a reason for a weaker power grid). This has even been a concern when first substations for high speed lines have been powered up in France. DC rectifiers in substations pull power from the 3 phases and thus generate a symmetrical load, much easier to handle by the power grid.
Both of those reasons are plausible (there were going to be tunnel sections in later phases of DART - though wasn't Picc-Vic in Manchester already being proposed as 25kV in the early 1970s? - and there was indeed concern about the implications of the full network for the power grid, although I think it was more about generating capacity than anything else).
Having said that, I believe the original Dublin Rail Rapid Transit Study in 1975 recommended third rail. 25 kV mainline electrification was already seen as a possibility in Ireland at the time, but this system was rejected for DART by the consultants on what seemed like fairly flimsy grounds - basically that the weight of on-train transformers was excessive. (By this time 25 kV had been operating satisfactorily on similar services in Glasgow for more than a decade, and I'm fairly sure the choice for Picc-Vic had been made before the DRRTS was completed.) The perception that DC gave better acceleration with the technology then available may also have been a factor.
The decision in favour of third rail was partly because it could coexist with 25 kV overhead (as used to be the case on parts of the North London line) in the event that that system was chosen for mainline electrification. Side- or bottom-contact third rail systems were rejected because it was felt they would impinge on the mainline loading gauge. I believe the switch to 1500 V overhead came in the later detailed design stages (when the prospect of mainline electrification had receded) and was motivated by issues with trespass and flooding, which made third rail less desirable. It's surprising that 25 kV wasn't reconsidered at this stage, although perhaps the clearance issues mentioned by @Gloster were a factor.
Note that I'm basing this on my memories of reading the DRRTS and on what I think was a series of papers published by the Irish Railway Record Society around the time of the original electrification in 1984. There was a comparison of 1500 V and 25 kV done for the current DART extension programme, which can be read at https://www.dartplus.ie/getattachme...Expansion-Rail-Electrification-Assessment.pdf; this gives a somewhat different account (page 18 of the PDF), but I think it conflates the DRRTS with the decisions taken in the subsequent design work.
In relation to the current programme, the assumption seems to be that it'll be at 1500 V; however, future mainline electrification is assumed to be 25 kV. I think the assumption is that 25 kV could be brought right into Heuston by electrifying the fast lines on that system and the slow ones on 1500 V, but any 25 kV electrification of the Dublin-Belfast line will require dual-voltage stock because Malahide-Drogheda is being done at 1500 V; in fact, anything that goes north of Islandbridge Junction will need a 1500 V capability.