Distributed water mixing and pressurized heat supply system having decoupling function and design method of system
A heating system, distributed technology, applied in the direction of heating system, hot water central heating system, lighting and heating equipment, etc., can solve the problem of mutual coupling of hydraulic working conditions, ineffective energy consumption, large ineffective energy consumption, pressure equalization tank diameter Major and other issues
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specific Embodiment approach 1
[0089] Specific implementation mode one: combine Figure 11 and Figure 12 To illustrate this embodiment, the system described in this embodiment includes a heat source 1, a circulating pump group 2 at the heat source, a primary network water supply pipe 9, a primary network return water pipe 10, a group of first-class heat users 5-1, a group of first-class Second-type heat users 5-2, a group of third-type heat users 5-3, multiple first mixed water pumps 7-1, multiple second mixed water pumps 7-2, multiple third mixed water pumps 7-3, multiple A self-supporting differential pressure valve 8, a plurality of booster pumps 3, a plurality of decoupling pipes 4, a plurality of check valves 6, a plurality of first heat user inlet pipes 9-1, and a plurality of first heat user outlet pipes 10 -1. Multiple second heat user inlet pipes 9-2, multiple second heat user outlet pipes 10-2, multiple third heat user inlet pipes 9-3 and multiple third heat user outlet pipes 10-3 , which is ch...
specific Embodiment approach 2
[0097] Specific implementation mode two: combination Figure 11To illustrate this embodiment, the resource pressure head provided by the heat network in this embodiment is greater than the resource pressure head required by each first-type heat user 5-1. Other implementation manners are the same as the specific implementation manner 1.
specific Embodiment approach 3
[0098] Specific implementation mode three: combination Figure 11 To illustrate this embodiment, the resource pressure head provided by the heat network in this embodiment is smaller than the resource pressure head required by each second-type heat user 5-2. Other implementation manners are the same as the specific implementation manner 1.
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