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IMM
 
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"Andy Hall" wrote in message
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On Sat, 13 Nov 2004 22:19:34 -0000, "IMM" wrote:



These people mainly deal with commercial applications, where headers are

the
norm. You intend to use UFH, contact the UFH people and just about

everyone
of them will say use a thermal store. So their weight of opinion would

be
greater, as there are more of them.


That is not a sound argument.


It is. You have never dealt with boiler manufacturers. At times their
knowledge of systems is minimal. They after all only make a water heater,
which is the new name for a boiler. Say boiler and you fail the corgi test.
Headers with a condensing boiler, UFH and rads in a domestic system is
ludicrous. I can them suggesting that if two boilers are used, or a regular
boiler, but a header which raises the return temp is ludicrous.

I contacted Ferroli about combining the output of two combi's. They said
no. I rang their top techie, who wasn't very good at all, and he was going
on about back pressure to the heat exchanger. I said a non-return valve
would be fitted on each and one also on the main in, so it highly unlikely
this would ever occur. I told him I had seen two Ferroli's connect this way
in France. He murmured and said no. They want people to fit them as per the
instructions as they can deal with that. Any deviation and they are
screwed.

I rang Worcester Bosch about doing the same. They said yes sir, and sent a
coloured diagram on how to do it. I mentioned what Ferroli said and they
confirmed my view that there is no reason at all why any two combi's of any
make cannot have their draw-offs combined as long as non-return valves are
used and there is enough flow.

Even the makers can't agree.

Using a header will lower a condensing
boilers efficiency, that is certain. Ask
the boiler people about
connecting the boiler to an integrated
thermal store with the UFH and rads
taken off the store. Not one will say no.

You also have to take into account that
the tech depts have people who read
from crib sheets. Did you ask them about
a header specifically? Or did you
ask them about running a UFH and rad
system off the boiler?

Look at this:
http://www.heatweb.com/techtips/unde...orheating.html

Then scroll down to Twin Zone Thermal Store Injection System

A dedicated UFH thermal store shown with the old fashioned type of

waether
compensation of stats. Cheap and effective. Of course an outsise

weather
compensator can be fitted to maintain the UFH section to what the outside
temp dictates.

Rads can be taken off the top of the store.

Also go to:
http://www.heatweb.com
scroll down to underfloor heating and see the solutions to underfloor
heating.


There are quite a number of muddled points on their underfloor heating
page.

For example, they say:

"Reducing cycling in itself will improve
efficiency, however gains are
also to be achieved by keeping return
temperatures to the boiler low
at all times.


That is so.

Without a thermal store this is very difficult to
achieve, unless the boiler has built in electronics. "


That is so.

This is erroneous. If you have a
modulating, condensing boiler,
which most are nowadays,


What sort of modulation? Load compensation as yours is. Few have that.
Most modulation is maintaining the boiler temp setpoint. The burner lowers
when reaching setpoint. Very different.

they have temperature sensing and
electroniics to optimise behaviour.


Only the up market expensive boilers.

Obviously a simple boiler with on/off
burner control will operate more
effciently with a buffer.


And one with flow setpoint burner modulation.

They don't present a convincing argument
for the case of most new boilers which
modulate.


They do.

Their whole "buffer store" argment is
based on the idea that the boiler will otherwise
cycle when driving the load, and this argument
is flawed with a modulating boiler.


Not so. They say that a low temperature will be maintained from a heat
bank/thermal store. This because of stratification and re-heating in one
pass of the water through the boiler. A tall heat bank that has dropped to
say 25C at the bottom and 55C at the top, and most of the centre 30C will be
reheated in "one pass" of the stores water. This is important. The boiler
will dump heat into the top of the heat bank, without mixing the stores
water, heating it up from top down. It may be 75C at the top and 25C at the
bottom. For most of the reheat the stores return temp to the boiler will be
very low and high efficiency follows. They also say once the heat bank
water starts a second pass the return temp is substantially higher.

So, the secret is:

- Have a tall thin cylinder to aid stratification.
- Controls to ensure store water is heat in only one pass through the boiler
- Stats to ensure the store is re-heated when most of water has cooled. This
also prevents boiler cycling.

I get the distinct impression, that as a vendor of thermal stores,
they are bending the situation to justify buying their product.


They are telling it as it is. Also with thermal stores/heat banks, a
cheaper simpler boiler can be purchased.

Their Twin Zone Thermal Store Injection System, is not as good as the
sectioned temperature store I described to you some time back, where a
weather compensator maintains the bottom section (UFH) of the store to the
desired temp the FUN needs.