Thank you for your information, I was pretty sure you would be able to help me. One reason that I asked the question was I am interested in understanding how to estimate the Wheel/rail coefficient of friction from the deceleration rate achieved under WSP activity.
In post incident On Train Data Recorder analysis I've carried out in the past you can provide an estimate, and it is only an estimate, of rail head coefficient of friction as follows.
Firstly, you need the gradient profile for the track that corresponds to the OTDR data under review.
Note the time and train speed and brake demand at the time of initial brake application and note the time and speed at which WSP activity first occurs.
Subtract the anti-jerk timing ( the delay built into the brake system which smoothly builds brake force to prevent jerking) from the period between brake application and WSP activity starting.
Subtract the train speed at the start of WSP activity from the train speed at the initial brake application.
Divide the train speed delta by the time delta and you've got a declaration rate.
Correct this for the gradient of the track, a falling gradient will reduce the declaration rate and rising vice versa so if the train is climbing a rising gradient at the time of the brake application then the gradient has helped the train to slow and it's help needs to be removed from the deceleration rate value.
So if you've calculated that the train was able to achieve 1%g retardation rate before WSP activity started, and the brake demand should have produced a higher rate of deceleration than that then it is reasonable to suggest that the rail head coefficient of friction was in the order of 0.01.
But this does not recognise the trains rolling resistance (parasitic friction in axle bearings etc. and aerodynamic drag) or which axle/axles were experiencing WSP activity.
And it assumes that static and dynamic friction are inversely and directly proportional to each other.
You can get cleverer than this and use the leading axle of the train, as it sees true rail head coefficient of friction, but this data isn't generally easily available on any train system.