pitdiver
Established Member
Something that has puzzled me for a long time. Why was it Diesel Hydraulic Locomotives weren't more widely adopted by British Railways and not just the Western Region?
That's a good point, EE, Brush, Birmingham RC&W and others had all been exporting diesel electric locomotives and multiple units around the world, mainly to the Commonwealth and South America......... but other loco builders (particularly English Electric and Brush), had a lot of electrical know how .........
And, an allied point, main line hydraulics had multiple, smaller, high-speed engines, for anything larger than a Hymek. If you have a twin-engined loco, how do you tap the power for ETH supply, without unbalancing the power distribution to the wheels. It was this that likewise prevented straightforward ETH supply in the USA from the classic streamlined E-unit passenger locos, which although electric transmission have twin engines and associated generators.What finally killed the DHs off though was aircon - for that you need the loco to supply electricity, so you need a generator however the wheels are driven
bigger loading gauge = more room to fit itETH could have been fitted - the DB Class 218 had it.
The Thames and Chiltern Turbos, 165 and 166 are hydraulic, although their attempts at air-con are a little suspect.What finally killed the DHs off though was aircon - for that you need the loco to supply electricity, so you need a generator however the wheels are driven
new generation of smaller lighter transmissions, more akin to a bus or truck design so more familiar to fittersThe Thames and Chiltern Turbos, 165 and 166 are hydraulic, although their attempts at air-con are a little suspect.
Weren't they mostly 0-6-0 trip workers / shunters? I've seen a photo online of two pulling a passenger train on test into a Glasgow station.NBL had built some diesels (hydraulic and electric) for overseas customers from the early '50s so it wasn't a totally alien concept to them.........
Ceylon Government railway G2 and the Paxman Voith Hydraulic 1 (PVH1) for TasmaniaWeren't they mostly 0-6-0 trip workers / shunters? I've seen a photo online of two pulling a passenger train on test into a Glasgow station.
Bit different from a mainline loco
First loco was 1935, the V140Does anyone know when hydraulic drive was invented? Electric drive has quite a long history. Heilmann in France experimented with steam-electrics in the 1890s and Dr Porsche built petrol-electric cars in the early 1900s.
I'd question if that's possible. Power equals tractive effort multiplied by speed, the tractive effort is finite so power actually used will correspondingly be low at low speeds. The engine might be at full revs but I suspect most of the energy is heating up the oil in some converter somewhere. I agree electrics do have a constraint that full voltage can't be applied to the voltage until the back EMF builds up with speed.there was the ability to use full power from a standing start
These are providing air conditioning within the same vehicle as the engine. A locomotive needs to transmit the power to the coaches it is hauling, and unless you're fitting hydraulic pipes down the train that has to be electric. The 170s, despite having similar transmissions to those earlier classes, went for electric air conditioning and I don't think anyone has regretted that decision.The Thames and Chiltern Turbos, 165 and 166 are hydraulic, although their attempts at air-con are a little suspect.
According to WikiDoes anyone know when hydraulic drive was invented? Electric drive has quite a long history. Heilmann in France experimented with steam-electrics in the 1890s and Dr Porsche built petrol-electric cars in the early 1900s.
The first diesel locomotives using fluid couplings were produced in the 1930s
This didn't apply to the first main line hydraulic loco, designed and built by North British, the D600 class, 2,000 hp from twin high speed engines, which weighed 122 tons, and needed 6-wheel A1A bogies, though only four were powered. North British were then sent the drawings from Swindon for the main Warship class, which had more powerful engines but were only weighed 80 tons.The big advantage as far as the WR was concerned was the weight-saving compared to the contemporary blunderbuss diesel-electrics. This was worth a coach or two more on the difficult route west of Newton Abbot and that the new depots (Laira, Landore etc.) could be built to a lighter specification for overhead cranes etc.
NBL had built some diesels (hydraulic and electric) for overseas customers from the early '50s so it wasn't a totally alien concept to them
I'd question if that's possible. Power equals tractive effort multiplied by speed, the tractive effort is finite so power actually used will correspondingly be low at low speeds. The engine might be at full revs but I suspect most of the energy is heating up the oil in some converter somewhere. I agree electrics do have a constraint that full voltage can't be applied to the voltage until the back EMF builds up with speed.
These are providing air conditioning within the same vehicle as the engine. A locomotive needs to transmit the power to the coaches it is hauling, and unless you're fitting hydraulic pipes down the train that has to be electric. The 170s, despite having similar transmissions to those earlier classes, went for electric air conditioning and I don't think anyone has regretted that decision.
LMS No 1831 built in 1932 was a diesel hydraulicFirst loco was 1935, the V140
The 151 had some kind of gear changing transmission, possibly similar to the 172.All production Sprinters were hydraulic. I'm not counting the 210 & not entirely certain what the 151 had.
They used a Twin Disc transmission, but whether that was a mechanical, hydro-mechanical or hydraulic transmission isn't clear.The 151 had some kind of gear changing transmission, possibly similar to the 172.
So did the Class 52 D1000 Western locos, they had three speed transmissions, changing up from 1st to 2nd automatically at about 25mph. Departing Taunton westbound they could be heard to do so, and the engine note fell, as they passed beneath the footbridge west of the station.The 151 had some kind of gear changing transmission, possibly similar to the 172.
Weren't the 1930s DMUs partly based on contemporary bus and lorry technology? The AEC factory being next to the main line in Southall having some connection. To what extent did the 1950s designs of first generation DMUs build on GWR experience?. GWR was the first diesel railcar user of any size, And WR was a big DMU user, yet not one d-h transmission DMU. Nor shunter.
Very much so. Most 1st generation DMUs (those numbered in the 79xxx range, with "yellow diamond", "white circle" and "blue square" coupling codes, followed GWR practice with mechanical pre-selector gearboxes - the difference was in how control was communicated between vehicles.Weren't the 1930s DMUs partly based on contemporary bus and lorry technology? The AEC factory being next to the main line in Southall having some connection. To what extent did the 1950s designs of first generation DMUs build on GWR experience?
It wasn't just electric transmission, it was GM devising through research their adhesion control "creep control" mode. Their previous electric transmission locos couldn't do this. Similar research on hydraulic transmission control would doubtless produce similar results.The GM class 59s were the point where electric transmission on locos used in the UK made an incredible step change, enabling one loco to move 5000 tons+ unassisted. Would hydraulic transmission have been capable of matching it by that point?