Sad Sprinter
Established Member
What’s the highest speed we can currently build trains to run at in normal service? And how much upgrades will it take for existing high speed lines to handle faster trains?
HS2 is designed for a maximum speed of 400km/h, so it is reasonable to assume that such trains could be designed fairly early in the route's life (as a part of 120 years).What’s the highest speed we can currently build trains to run at in normal service? And how much upgrades will it take for existing high speed lines to handle faster trains?
What’s 400 kph in miles?HS2 is designed for a maximum speed of 400km/h, so it is reasonable to assume that such trains could be designed fairly early in the route's life (as a part of 120 years).
That is 248mph, but the world speed record for a standard gauge train is held by the French on a very specially prepared train, - 574.78km/h (352.7mph in obsolescent imperial measurement). That speed is far from repeatable at present.What’s 400 kph in miles?
Can trains go even faster than that?
The current generation of TGVs, and the LGVs they run on, are capable of 320 km/h ( 200mph ) in normal service but will usually run at 300 km/h ( 186 mph ) as they are mixed in with older versions of TGV that are only able to use that speed.
Glossary:
TGV: Train Grande Vitesse
LGV: Ligne Grande Vitesse
Depends on the curve radius really, but they are mostly fairly straight so it should be possible - but of course you'd need all the rolling stock to be capable of the speed as well otherwise you'll lose capacity from the different performance profiles tripping over each other, as happens on the main lines in the UK at the moment.I was wondering if LGV nord and South East could be upgraded to higher line speed (250+) and if that would improve the business case for more international high speed traffic, or whether new, even faster lines would be necessary. I know which option I’d pick!
That depends which LGV route they are on. LGV Est is 320km/h and trains get to that speed - the time I did it, it was actually a DB ICE set.The current generation of TGVs, and the LGVs they run on, are capable of 320 km/h ( 200mph ) in normal service but will usually run at 300 km/h ( 186 mph ) as they are mixed in with older versions of TGV that are only able to use that speed.
Glossary:
TGV: Train Grande Vitesse
LGV: Ligne Grande Vitesse
Japanese Shinkansen operators have adopted a small degree of tilt capability on the N700 rolling stock from 2007 to increase speed marginally to 270kph on the quite sinuous original Tōkaidō high-speed line from the 1960s, which has numerous 2500m radius curves. This saved 8 minutes on the fastest Tokyo-Osaka runs compared to previous rolling stock. The N700 and latest N700S can go faster than this, up to 300kph, on other parts of the network, where not so constrained by curvature.Depends on the curve radius really, but they are mostly fairly straight so it should be possible - but of course you'd need all the rolling stock to be capable of the speed as well otherwise you'll lose capacity from the different performance profiles tripping over each other, as happens on the main lines in the UK at the moment.
You'd need to beware of "bunching" at the places where there are tighter curves, such as around Lille. That could also hit capacity.
It's a complicated set of calculations with a lot of inputs. Faster trains need better crashworthiness and that often adds weight. Unless the sustained running at the higher speed thus enabled is far enough, a decrease in weight to allow better acceleration to, and later braking from, a lower top speed might be able to equal overall point-to-point section times. Much of the effort in refining the latest trains has concentrated on weight-saving and aerodynamics. The latest Velarios and Avelias have air-smoothed fairings over everything to reduce turbulence and thus air resistance, leading to improved energy economy.Also factor in the amount of power they would drink getting to and maintaining such speeds as well as how long you can actually keep them at that speed for.
Once you climb above 300km/h crashworthiness is only of limited usefulness.It's a complicated set of calculations with a lot of inputs. Faster trains need better crashworthiness and that often adds weight.
... and of course, just how much business would shaving 2.5 seconds per km bring against the 350km/h to 400km/h step increase in operational, maintenance initial capital cost of acheving those speeds. Bear in mind that such a time saving is only achieved whee the trains actually can reach those speeds, after acceleration and before braking.In many ways it’s less of a question of “how fast they can go” than if “how long do they take to stop?” - without decanting passengers and luggage to the floor.
Who said this?Once you climb above 300km/h crashworthiness is only of limited usefulness.
If the train hits something at 400km/h or more it’s almost impossible to engineer the survival of the passengers.
Correct. Given that the reason for building was capacity not speed it would have been a much better sell.I've always wondered if HS2 would have been cheaper if built for an entirely adequate 300 kph instead of 400. Four hundred smelt of willy-waving to me. If France are content with 300-320 kph, we should be too.
HS2 spent a while talking to other European countries and one if the recommendations was to overbuild on speedI've always wondered if HS2 would have been cheaper if built for an entirely adequate 300 kph instead of 400. Four hundred smelt of willy-waving to me. If France are content with 300-320 kph, we should be too.
In the next few years it is likely that many of the 70mph limits on non-motorway roads will be lowered to 60mph or even 50mph. So why not build new roads (especially bypasses) or any revised junctions to specification for a 50mph speed limit? Also make single carriagway roads 50mph or even 40 mph? Both would be considerably cheaper, reduce traffic noise/vibration, reduce KSI incidents and lower energy consumed.Correct. Given that the reason for building was capacity not speed it would have been a much better sell.
Most of the ICE network is 280k, that would have been more than adequate and considerably cheaper.
Tighter curves could mean a shorter route in some cases. A long curve could be replaced by two tighter curves connected by a straight. It could also make it easier for a line to run alongside an existing motorway.The route would be longer as it winds more to use cheaper land. But it wouldn’t be cheaper in urban areas as the turning radius for 300kph is still huge. In turn, you’d receive less benefit, less change away from motorways and airports, less relief on the classic lines, less freight movements there. What’s not willy waving about 300?
Is that an unrealistic dream that won't die?It could also make it easier for a line to run alongside an existing motorway.
I've always wondered if HS2 would have been cheaper if built for an entirely adequate 300 kph instead of 400. Four hundred smelt of willy-waving to me. If France are content with 300-320 kph, we should be too.
The difference is negligible. I can't find the definitive minimum radius for HS2 but figures from European HS lines talk about 7000m radius for 400 km/h and 6000m for 350 km/h, (the exact realtionship depends on vehicle designs and a 400 km'h design woud have dynamics appropriate to the line quality). So in terms of longer or shorter routes and assuming those figures, a 20 deg deviation would be a 2.4km curve on a 400km/hour alignment, whereas the curved part(s) of the same deviation would be about 2.09km plus the associated straight(s) would be no more than 30m less which is neglible from a cost point of view and less than a second in travelling timeTighter curves could mean a shorter route in some cases. A long curve could be replaced by two tighter curves connected by a straight. It could also make it easier for a line to run alongside an existing motorway.
The proposed route for the HS2 eastern arm included substantial stretches more or less alongside the M42, A42, M1 and M18, but with narrow strips of land in between where the road was too curvy. If tighter radii had been adopted for the railway, those would have been narrower.Is that an unrealistic dream that won't die?