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View the thread, titled "HELP! UFH system causing boiler temp drop/excessive gas consumption" which is posted in Boiler Advice Forum on UK Plumbers Forums.

The size of the room is relevant in relation to temperature lift of course but it lifts the temp fine in the barn when there is no demand from the bedrooms run through the 9 port manifold as the boiler doesn’t drop temperature.

I have already asked for a second opinion from aanother ufh engineer (in addition to the original installer) which is when I had received my conflicting diagnosis (one said the LLH is required, other said route cause of issue is diameter of feed piles from boiler to manifold(s) due to the long runs of pipe - hence my post on here.

Either solution ref above is a fairly major job by the looks of things and I am concerned that one or the other proposed solution (or worse still both!) will not resolve the issue of the boiler temperature plummeting like a stone due to demand
 
For us (or them) to help we would need to know the loadings (heatloss) for the zones & the pipe sizes feeding each, it is easy to work out if the supply pipework can carry the required flow of water.
Are the manifolds Flow & Returns 22 or 15mm ?
 
Gas consumption has more to do with the fabric of the building and heat loss. Not the system. But a badly set up and installed one will use a bit more.
You have a large building that will require a given amount of energy to heat it. If the building is well built, air tight and well insulated. It will be efficient. But if it’s draughty and poorly insulated, it will cost a lot more to heat to a given temp.
 
You need to get a engineer who understand how UFH works told you how I would do it my fellow members may have other ideas . Kop
 
Are there any ufh specialists on here that have had experience of larger properties/installs that are local and would be willing to commit to a diagnosis and guarantee that it would resolve the issue?
 
Pictures of the manifolds as requested. The pipe work coming from the boiler to feed these is 22mm copper BUT to the 9 port manifold where it goes into the ceiling there is a section of plastic speedfit on the flow/return which I understand has quite a significant reduction in bore (which, if the fault is caused by the feed to the manifolds being compromised then this will only serve to exaggerate this issue?)

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The pipe work coming from the boiler to feed these is 22mm copper BUT to the 9 port manifold where it goes into the ceiling there is a section of plastic speedfit on the flow/return which I understand has quite a significant reduction in bore
It goes from copper to plastic but does the external size reduce ie. 22 to 15mm.
The flow rates through plastic are a little less but the plastic normally has less resistance due to less fittings & smoother bore.
 
You could get an idea of the flow rate by looking at the temperatures on each of the manifolds (F&R) & the temps back at the boiler with just the 9 port one on.
 
I almost jumped in earlier in the thread to say the same. A buffer tank would improve things I'm sure. Also, that's a large area - 650 cubic meters ish and a similar sized extension. Without knowing all the building specs don't know but I would suspect that the boiler at 24 KW is too small
 

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