This invention relates to HVAC systems, zone control units, and control systems. More specifically, an HVAC system employs distributed zone control units that provides localized air recirculation. A zone control unit includes a return air section that receives return air from serviced building zones
This invention relates to HVAC systems, zone control units, and control systems. More specifically, an HVAC system employs distributed zone control units that provides localized air recirculation. A zone control unit includes a return air section that receives return air from serviced building zones and mixes the return air with a supply of outside air. The mixed air is heated and/or cooled by the zone control unit and discharged to serviced building zones in a controlled manner. An exhaust air system is used to extract air from serviced building zones. The HVAC zone control unit also includes a local control unit with an Internet protocol address. The local control unit includes a memory and a processor for storing and executing a control program for the zone control unit. The control program controls of the zone control unit in response to commands received via the Internet.
대표청구항▼
1. A plurality of prefabricated distribution assemblies configured for use in an Heating, Ventilation, and Air Conditioning (“HVAC”) system providing HVAC to zones of a building, the HVAC system having a plurality of distributed Zone Control Units (“ZCUs”), each of the ZCUs locally providing HVAC to
1. A plurality of prefabricated distribution assemblies configured for use in an Heating, Ventilation, and Air Conditioning (“HVAC”) system providing HVAC to zones of a building, the HVAC system having a plurality of distributed Zone Control Units (“ZCUs”), each of the ZCUs locally providing HVAC to a respective subset of the zones, each prefabricated distribution assembly having a length and the plurality of prefabricated distribution assemblies comprising: a first discrete prefabricated distribution assembly and a second discrete prefabricated distribution assembly;wherein the first and second discrete prefabricated distribution assemblies each comprise: a length of duct having first and second ends, the duct configured to transport a flow of supply air from the first end to the second end;a plurality of brackets coupled with the length of duct, the brackets comprising mounting features; anda supply line configured to supply a fluid to a heat exchanging coil of one or more of the distributed ZCUs, the supply line having a first open end and a second open end; anda return line configured to return the fluid from the heat exchanging coil of one or more of the distributed ZCUs, the return line having a first open end and a second open end;wherein the supply and return lines supported by at least one of the mounting features,wherein the first end of the length of duct of the first discrete prefabricated distribution assembly is configured to couple with the second end of the length of duct of the second discrete prefabricated distribution assembly to provide for the transport of the flow of supply air along a combined length of the first discrete prefabricated distribution assembly and the second discrete prefabricated distribution assembly; and;wherein the first open end of the supply line of the first discrete prefabricated distribution assembly is configured to couple with the second open end of the supply line of the second discrete prefabricated distribution assembly for the transport of the supply fluid along the combined length of the first discrete prefabricated distribution assembly and the second discrete prefabricated distribution assembly; andwherein the first open end of the return line of the first discrete prefabricated distribution assembly is configured to couple with the second open end of the supply line of the second discrete prefabricated distribution assembly for the return of the fluid along the combined length of the first discrete prefabricated distribution assembly and the second discrete prefabricated distribution assembly, andwherein the prefabricated distribution assemblies comprise mounting surfaces to mount the prefabricated distribution assemblies to the building. 2. The plurality of prefabricated distribution assemblies of claim 1, wherein the fluid is water. 3. The plurality of prefabricated distribution assemblies of claim 1, wherein the first and second prefabricated distribution assemblies have the same configuration. 4. The plurality of prefabricated distribution assemblies of claim 1 wherein at least the first or second prefabricated distribution assemblies comprise a discharge port coupled with the duct to discharge a portion of the supply airflow to an associated one of the distributed ZCUs. 5. An HVAC system comprising the plurality of prefabricated distribution assemblies of claim 4, the HVAC system further comprising a ZCU coupled with the discharge port. 6. The HVAC system of claim 4, wherein the ZCU includes a heating coil. 7. The HVAC system of claim 5, wherein the ZCU includes a cooling coil. 8. A prefabricated distribution assembly configured to be joined end-to-end with similarly configured prefabricated distribution assemblies to form a combined distribution assembly, the combined distribution assembly for use in an HVAC system providing HVAC to zones of a building, the prefabricated distribution assembly comprising: a length of duct having first and second ends, the duct configured to transport a flow of supply air from the first end to the second end, the first end of the duct configured to couple to a second end of a duct of a second prefabricated distribution assembly and the second end of the duct configured to couple a first end of a duct of a third prefabricated distribution assembly to form a combined length of duct;a plurality of brackets coupled with the duct along the length of duct, the brackets comprising mounting features; anda supply line to supply a fluid to a heat exchanging coil, the supply line having a first end and a second end, the first end of the supply line configured to couple to a second end of a supply line of the second prefabricated distribution assembly and the second end of the supply line configured to couple to a first end of a supply line of the third prefabricated distribution assembly to form a combined length of supply line; anda return line to return the fluid from the heat exchanging coil, the return line having a first end and a second end, the first end of the return line configured to couple to a second end of a return line of the second prefabricated distribution assembly and the second end of the return line configured to couple to a first end of a return line of the third prefabricated distribution assembly to form a combined length of return line;the supply and return lines supported by at least one of the mounting features; andmounting surfaces to mount the prefabricated distribution assembly to the building. 9. The prefabricated distribution assembly of claim 8, wherein the first end and the second end of the supply line are sealed and wherein the first end and the second end of the return line are sealed. 10. The prefabricated distribution assembly of claim 9, wherein the supply line is pressurized and wherein the return line is separately pressurized. 11. The prefabricated distribution assembly of claim 8, wherein the duct further includes a discharge port extending from the duct at a position between the first end of the duct and the second end of the duct.
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