Thank you CBY.
My wife is also happy with the result
We use the Morgan quite often for touring with luggage so ground clearance can be critical, hence the 195/65 R15 tyres.
Regarding ride height as governed by the front suspension it is fairly easy to understand that if the upper spring is set so that the static ride height is such that the lower spring is just touching the underside of the sliding stub axle it is in fact the length, or position, of the uncompressed and rather rigid lower spring which sets that static postion. If the position of the upper spring is adjustable you can therefore shim under the lower spring and raise the upper adjustable spring seat to lower the car by the thickness of the shims (always keeping to the rule of an uncompressed lower spring).
Because of variations between different models the SSL kit includes 2 x 20mm spacers that are placed as require by the installer (and the car). My installation, as adjusted to my particular requirements, uses 10 mm below and 10 mm above.
If, over time, the upper springs settle a little I can adjust the upper spring seat to once again restore the ride height always to the point where the lower spring is not in compression.
I won't go into full details here but if anyone really wants to know just ask me.
I can well understand that SSL would not sell individual components of the kit (except in the unlikely requirement of spare parts). The system is designed such that it works together as a set. It is a professionally developed, tried and tested, Morgan front suspension improvement system. I have always found SSL to be most approachable and they even supplied me with a slightly higher rate set of springs for the rear coilovers of the 5 link system. This has been a great help with the extra 25 kg of luggage that we carry on the rear rack when touring.
One last thing regarding dampers ( also called shock absorbers if combined with springs). The standard dampers that were supplied by Morgan are not particularly good quality but the did offer better alternatives as an option. It seems that this is an area where there are several very valid alternatives. However I would like to cover the issue of gas-filled dampers.
A gas filled damper is not a pneumatic suspension system, it is still an oil damper system. I will leave the explanation to
my-cardictionary.com
Single-tube gas-filled shock absorbers
Single-tube gas-filled shock absorbers work along the same principle as a conventional hydraulic shock absorber, but also have a gas cushion that be compressed, therefore creating space for the compressed oil...
Function
Single-tube gas-filled shock absorbers work along the same principle as a conventional hydraulic shock absorber, but also have a gas cushion that be compressed, therefore creating space for the compressed oil. A floating piston separates oil and gas, thus preventing them from mixing. If the oil is displaced when the spring is compressed, the piston compresses the gas cushion. When the spring then extends, the gas pushes the oil back, similar to a spring. The gas pressure is very high and ensures that even the smallest movements are damped.
I will add to that that a system of valves and apertures (that may be adjustable) governs the flow of oil in compression and rebound. Further reading on the subject at
https://corneringperformance.com/how-do-suspension-dampers-work/Just remember a pogo stick is a suspension system that does not have a damper

I think I will stop here as I do not want to get into a sort of text tennis match. If anyone wants further information feel free to contact me by PM.