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Boiler - Small water content - Active mixing
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The boiler in this example is demand controlled, more information on this control strategy can be found in Basic boiler controls. Furthermore the distribution circuits of every branch is an active mixing, which means no primary pump is needed, except for the pump on the primary side of the open header. The open header ensures a constant flow through the boiler, although there is a variable flow on the secondary side of the open header. More information on concepts with an open header can be found in Header configuration and Advanced pump control. This concept is typically for boilers with a small water content because they need a minimum flow rate through the boiler.
More information on boilers and distribution circuits can be found in Condensing boiler and Distribution circuits.
Boiler - Small water content - Passive mixing
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This template is similar as the previous template “Boiler - Small water content - Active mixing“, except for the passive mixing circuits instead of the active mixing circuits. Because a passive mixing circuit is used, an extra pump is needed. In this case the pump on the secondary side of the open header can handle a nearly zero flow rate. If this is not the case, templates with minimum flow protection can be found in Header configuration.
More information on boilers and distribution circuits can be found in Condensing boiler and Distribution circuits.
Boiler - Small water content - Variable flow
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This template is similar as the previous template “Boiler - Small water content - Passive mixing“, except for the throttle valves instead of the passive mixing circuits. Throttle valves cant be controlled to change the supply temperature, but control the flow rate. In this case the pump on the secondary side of the open header can handle a nearly zero flow rate. If this is not the case, templates with minimum flow protection can be found in Header configuration.
More information on boilers and distribution circuits can be found in Condensing boiler and Distribution circuits.