Worcester 12/14 Installation And Servicing Instructions page 14

Conventional flue and room sealed bf; floor standing oil-fired pressure jet appliances
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Fig. 12. Sealed Primary System.
Fig. 13. System filling and make-up.
Heating return
Non return
valve
Test cock
9.14 With an initial system pressure of 0.5 bar, a system
capacity of about 150 litres can be accommodated. Refer to BS
7074:1 for more information.
Where the system volume exceeds the value given in Table 11 an
additional expansion vessel, of suitable volume, should be fitted
to the heating return pipe-work as close to the boiler as possible.
Note: The values given in Table 11 are the total system volumes.
The boiler primary water capacity given in Table 1 should be
deducted from the total system volume when calculating the
volume for radiators, pipe-work, etc.
9.15 The method of filling the heating system can be by either
method 1 or 2 shown in Fig. 13. The filling point must be at low
level and must never be a permanent direct fixing to the mains
water supply.
9.16 Water loss must be replaced . See Fig. 13. The connection
should be made to the central heating return as close to the
appliance as possible.
9.17 The make up vessel, where fitted, must be fitted with a
non-return valve.
Automatic by-pass valve
to be fitted when thermostatic
valves are fitted on all radiators
Non return
valve
Hose union
Stop cock
Temporary hose
Method 1
Heating Flow (22 mm)
Heating Return (22 mm)
Auto
Heating return
air vent
Fill point
9.18 Repeated venting loses water from the system. It is essential
that this water is replaced and the system pressure maintained.
9.19 Connections to the mains water supply must not be made
without the authority of the local water company.
9.20 Connections to the system must resist a pressure of up to
3 bar.
9.21 Radiator valves must conform to BS 2767(10).
9.22 Other valves used should conform to the requirements of
BS 1010.
14
Pressure
Relief
Valve
Pump
Expansion
Vessel
Make up
vessel
Non return
valve
Stop
300 mm (12 in) min.
cock
above the highest
point of the system.
Method 2

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15/1920/25

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