A flexible solution
Designing new buildings and properties to connect to a district energy system, which operates at lower temperatures, is relatively straightforward. Building Regulations have helped reduce the heat losses from buildings by improved U-values and lower infiltration rates – all of which means thermal comfort can be achieved with lower temperatures.Existing buildings, particularly ageing ones, usually have higher heat losses and infiltration rates, so higher temperatures are required to achieve the same thermal comfort levels.Connecting these buildings to a network with lower operating temperatures can only be done after a full evaluation of space-heating emitters – such as radiators, fan coil units and air handling unit coils – to ensure heat losses are achieved.While it wasn’t necessary on the Queens Quay project, improvements to building fabric, such as insulation and replacing single-glazed windows with double-glazed ones, can help with reducing heat losses and is often a sensible place to start.Often, older LTHW systems have constant-volume pumps controlled via 3-port valves. This can lead to high return temperatures to the energy centre and to the system not performing as designed, or turning off. This, in turn, can result in increased network losses and higher contribution from gas-fired boilers.Converting these 3-port systems to 2-port ones, employing pressure independent control valves, ensures good control and low return temperatures, although there will generally need to be a change in pump-control philosophy, from constant volume to variable volume, often requiring the introduction of inverters to all pumps.Another consideration is domestic hot water. CIBSE/Association of Decentralised Energy Heat network code of practice (CP1) has recently reduced the temperature required within residential properties.However, commercial and healthcare buildings have different temperature requirements and these influence the minimum network temperatures. This is particularly applicable to the summer operating condition, ie the minimum weather compensated temperature.
Solution detail