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I read about people having it on their system, and scratch my head to work out how it all works. So correct me if wrong, the thermostat controls the amount of heat which is used by each room, often the thermostat is programmed, so room temperatures vary through the day, and the thermostat can tell the boiler in two ways, as to if more or less heat is required, either by the return temperature of the water, or electrically.
Using the electric method, again two options digital i.e. on/off, or analogue, i.e. up/down, the problem with analogue is some hub has to collect all the on/off signals from the thermostats and turn them into an analogue signal. As we have many thermostats around the house, and other than EPH which can set them up as master and slaves, most systems either would need to use either just one thermostat for whole house, OK with hot air system, but not really with water, or some hub to work out how much heat is required based on how many TRV heads are calling for heat. This would only work if all TRV heads are linked, in the main we run on a near enough system, with key thermostats able to fire the boiler, and most TRVs only regulate the water and don't electrically connect to any hub.
So in the main, the boiler output is controlled by the return water temperature, in early versions the feed water temperature, as to if the boiler turns on/off, or modulates, either way it adjusts output in the main depending on the return water temperature. With condensing boiler we want that analogue control so it can gain the latent heat of the flue gases. So we want to avoid any thermostat turning the boiler off, unless all rooms are satisfied.
I suppose the wall thermostat is there to tell the boiler it is needed, where the return water temperature will tell it when not needed, but is seems this is not used, but the demand on the boiler is down to how many TRV heads are calling for heat.
This will be more down to the program running in each TRV head, to what the outside temperature is doing, and I just can't get my head around what weather compensation does, the more I think about it, the less sense it seems to make.
So what does it do?
Using the electric method, again two options digital i.e. on/off, or analogue, i.e. up/down, the problem with analogue is some hub has to collect all the on/off signals from the thermostats and turn them into an analogue signal. As we have many thermostats around the house, and other than EPH which can set them up as master and slaves, most systems either would need to use either just one thermostat for whole house, OK with hot air system, but not really with water, or some hub to work out how much heat is required based on how many TRV heads are calling for heat. This would only work if all TRV heads are linked, in the main we run on a near enough system, with key thermostats able to fire the boiler, and most TRVs only regulate the water and don't electrically connect to any hub.
So in the main, the boiler output is controlled by the return water temperature, in early versions the feed water temperature, as to if the boiler turns on/off, or modulates, either way it adjusts output in the main depending on the return water temperature. With condensing boiler we want that analogue control so it can gain the latent heat of the flue gases. So we want to avoid any thermostat turning the boiler off, unless all rooms are satisfied.
I suppose the wall thermostat is there to tell the boiler it is needed, where the return water temperature will tell it when not needed, but is seems this is not used, but the demand on the boiler is down to how many TRV heads are calling for heat.
This will be more down to the program running in each TRV head, to what the outside temperature is doing, and I just can't get my head around what weather compensation does, the more I think about it, the less sense it seems to make.
So what does it do?
