ASharpe
Member
On the idea of speeding out of Leeds, I have noticed a few rather aggressive brake tests after leaving Leeds the last couple of weeks. I'm sure they are not speeding but definitely felt stronger than usual.
Welcome to the forum. I'm sorry this discussion has been diverted away from your original question.excessive speeding.
Is this a regular occurrence
Signals are just lamps on posts. They don't stop trains. The separate TPWS system has track components that are activated when signals are red, and train circuitry that detects an overspeed situation when passing over these components and applies the brakes automatically.how would the signal know to turn to red to stop the train from excessively speeding away on departing from Leeds?
To be fair to them this is a very easy mistake to have made given they said the train arrived at their destination half an hour late. The link you posted appears to have corroborated this subsequently...You said that the train was held for 30 mins leaving Leeds. That clearly was not the case.
But what you wrote was that "the train was held outside Leeds station for 30 minutes". It wasn't.
But that is not what you wrote on your original post!
You stated you were sat outside of Leeds for 30 mins.
TPWS plus is 75 mph to 100 mph, or has that fact been amended?TPWS+ (only at locations with linespeed above 90mph, and has caused my depot a lot of issues of late) is generally 65mph-ish, TPWS generally 43mph-ish…
I doubt it’s set to linespeed anywhere, as it’s intended to protect certain high risk locations, such as junctions, large speed reductions etc., where the brake should already be well and truly in…
What, exactly, are you hoping to achieve by pointing this out?
Wow, way to dob your colleague in…….!The conductor told us it was due to the driver excessively speeding away from Leeds station.
It's definitely very revealing when people create a huge fuss about a very small point which wouldn't be apparent to ordinary travellers, and has no overall effect on anything yes.Yes, a bit silly pointing out facts or correcting information isn't it.
Signals are just lamps on posts. They don't stop trains. The separate TPWS system has track components that are activated when signals are red, and train circuitry that detects an overspeed situation when passing over these components and applies the brakes automatically.
Hope this helps
Ahhh I think I understand now, thank you!Thinking of a road analogy, you might have a rural road with a specific speed limit e.g. 50mph, but where some bends can't be taken safely at more than 30mph. It's up to drivers to be aware of that, rather than expecting the posted limit to be reduced to a lower value on the approach to each bend.
If you don't pay much attention to the time the train stopped, and then get to your destination 30 minutes late, it's not entirely unlikely that you will perceive most of the delay to have been when stopped. Time seems to passed very slowly on a packed train stopped outside a station, as an ex-South London commuter I have plenty of experience of this phenomenonBut that is not what you wrote on your original post!
You stated you were sat outside of Leeds for 30 mins.
Normal braking should be 6 percent g in good adhesion conditions; this rate within the perturbation curve will not activate TPWS, as stated in the Rail Industry Standard. All passenger trains can easily achieve this rate on clean wet rails/wheels.If anyone is still unclear, this video explains things well:
Initially it talks about signals passed at danger. TPWS overspeed sensors associated with a signal are discussed about 2 minutes 50 in. It should be added the same system can be present for a speed restriction. For example, if line speed changes from 75 mph to 40 mph, there will likely be TPWS before you get to the 40 mph. These could likely be set in the ball park of 60 mph, and trigger an emergency brake application should the train travel over them above this speed. In other words, the train could be within the current speed limit (75 mph) but still have an emergency brake application. This is because the calculations based on given maximum brake performance suggest the train would be speeding by the time it reached the 40 mph - not that it is currently speeding.
The issue presently, is modern units have such good brakes that TPWS installations are sometimes a little too keen - where, say on a 195, normal braking will bring the train down safely where this would not have been the case on, say, a 142.
we asked why we were sitting outside the stadium for 30 minutes or so and he replied the driver was speeding away out of Leeds
The common one at Leeds is leaving platform 11 or 12 on a yellow and being routed onto the through road. Then reading across to one of the adjacent signals.That sounds like a very unlikely scenario.
Having a Start Against The Signal SPAD at a location like Leeds would be an extremely unusual and serious irregularity.
Far more likely is running on restrictive aspects towards one of the many junctions in the area and tripping the TPWS.
I’d guess that it’s a fault with the train rather than an incident. The delay was probably trying to reset the aws/tpws a few have struggled.I'm going to be bluntly honest and suggest this is at least an embellishment of the truth. I don't know of any driver who would find a safety of the line incident of the magnitude you suggest amusing.
Seeing as you were close enough to hear what was going on in the front cab, did you hear any other sounds?
I wonder if this was an attempt at humour that fell flat on it's face, rather than the snarky comment most are taking it as?
Normal braking should be 6 percent g in good adhesion conditions; this rate within the perturbation curve will not activate TPWS, as stated in the Rail Industry Standard. All passenger trains can easily achieve this rate on clean wet rails/wheels.
Yes the calculations are based on trains with enhanced braking capability. Note annex 3 and 4 of the attachment.
Leave it, it’s his baby and somehow he manages to wrangle it in to any thread!As for the 6%g comment, I think you've misunderstood my point (perhaps I didnt explain it thoroughly) - predominantly as, as a driver, you haven't the foggiest idea how much brake force equates to 6%g
Normal braking should be 6 percent g in good adhesion conditions; this rate within the perturbation curve will not activate TPWS, as stated in the Rail Industry Standard. All passenger trains can easily achieve this rate on clean wet rails/wheels.
Yes the calculations are based on trains with enhanced braking capability. Note annex 3 and 4 of the attachment.
Precisely this. It has been pointed out on several occasions that we aren’t taught anything like this in training. Not sure if this was previously the case though? We drive to our professional route and traction knowledge and experience.Leave it, it’s his baby and somehow he manages to wrangle it in to any thread!
That one always causes a little bit of confusion among passengers if there's no announcement made about it too, for the train to almost immediately come to stand again, after moving just a few metres out of the platform, and still within the overall station area. Some conductors do specifically say that there's a short wait but the train will be moving again shortly though. Obviously that's with normal operation and not a spad!The common one at Leeds is leaving platform 11 or 12 on a yellow and being routed onto the through road. Then reading across to one of the adjacent signals.
You’d have a job tripping the tpws though as the linespeed is only 15.
Running brake test after train reversal or driver change?On the idea of speeding out of Leeds, I have noticed a few rather aggressive brake tests after leaving Leeds the last couple of weeks. I'm sure they are not speeding but definitely felt stronger than usual.
With the huge proviso that I'm not in the industry, this document (pages 20-21) may assist with answering that question. As other posters have mentioned it doesn't seem like something that the occupant in the hot seat needs to get het up over. Give me someone who knows what they're doing any day of the weekCan you explain the perturbation curve please. I have never heard of the phrase. Graphs would be nice too.

I am unsure, but why would 6%g not activate the TPWS ? Are there TPWS grids that measure braking forces ? If I was going too fast over the grids but was braking in say, 12%g would the TPWS not fire ?
With the huge proviso that I'm not in the industry, this document (pages 20-21) may assist with answering that question. As other posters have mentioned it doesn't seem like something that the occupant in the hot seat needs to get het up over.
Fair point and you're better placed to know than me. Hopefully the poster whom @ComUtoR question was aimed at will reply in due course.I’m afraid not. Unless I’m missing something, this is related to ERTMS rather than TPWS. These are completely different systems so this document has no relevance to the current situation.
I think we're at crossed purposes here, my 'het up' comment was in relation to the perturbation curve discussion. I totally agree with you. I was more angling at the emphasis a minority of posters were placing on theory over practice. I think @LCC106 put it far better than I haveI’d be worried if any person “in the hot seat” didn’t get “het up” over a TPWS event which could end their career (yes, it’s taken that seriously). Would you feel confident travelling on a train being driven by someone who doesn’t brake for speed restrictions to the point where an emergency system (which isn’t present everywhere) has to intervene?
Precisely this. It has been pointed out on several occasions that we aren’t taught anything like this in training. Not sure if this was previously the case though? We drive to our professional route and traction knowledge and experience.
I think we're at crossed purposes here, my 'het up' comment was in relation to the perturbation curve discussion. I totally agree with you. I was more angling at the emphasis a minority of posters were placing on theory over practice. I think @LCC106 put it far better than I have![]()
Thank you for the above information.Welcome to the forum. I'm sorry this discussion has been diverted away from your original question.
It is not a regular occurance. The overspeed detection system (TPWS) is designed not to engage in normal operations. If TPWS makes an emergency brake application, it means that a driver has passed a signal at danger (serious and potentially fatal); or that he had passed a sensor in advance of a red signal (or tight curve) at a speed judged to be too fast to be able to stop in time; or there is a TPWS fault. Luckily for your driver's career, it seems this last one was the case. I rather imagine is was laughs of relief that you heard from the cab.
Signals are just lamps on posts. They don't stop trains. The separate TPWS system has track components that are activated when signals are red, and train circuitry that detects an overspeed situation when passing over these components and applies the brakes automatically.
Hope this helps
It sounds to me that, more than anything, something has been lost in translation slightly, enough to cause a minor misunderstanding.Thank you for the above information.
I'm glad that nothing serious happened and that the driver wasn't at fault.
I wasn't criticising them for laughing. I was only reporting what I heard.
Yes, (almost) always out of the bay platforms. Just a few have been far more noticeable now for some reason.Running brake test after train reversal or driver change?
The issue presently, is modern units have such good brakes that TPWS installations are sometimes a little too keen - where, say on a 195, normal braking will bring the train down safely where this would not have been the case on, say, a 142.