IP Library › Granted Patent US 11,841,159
Granted Patent B2
US 11,841,159 · App. 16/935,776 · Granted Dec 12, 2023

Embedded heat exchanger with support mechanism

Inventor: John Chris Karamanos (San Jose, CA)
F24F13/0272B23P15/26F16L3/08F24F1/0063F24F1/26F24F5/0003F24F13/0245F28F9/002F28F9/0246F28F27/02B23P2700/09F24F2221/12F24F2221/36Y10T29/4935Y10T29/49826
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Quick Facts
Patent No.
US 11,841,159
App. No.
16/935,776
Granted
Dec 12, 2023
Kind
B2
Abstract

A zone-control unit for use in a heating, ventilation, and air conditioning (HVAC) system, the zone-control unit includes a heat exchanger, an inlet piping assembly coupled with the heat exchanger for supplying fluid to the heat exchanger, an outlet piping assembly coupled with the heat exchanger for receiving fluid from the heat exchanger, a bracket that maintains the inlet piping assembly and the outlet piping assembly in positional relationship, and an ancillary component coupled with the heat exchanger.

Claims (43)

1. A pre-fabricated air terminal apparatus, comprising:

a duct interface configured to interface to ductwork at an installation site;

a thermal transfer unit, situated in the duct interface, comprising a coil;

a group of pipes that are coupled to the thermal transfer unit, wherein the group of pipes comprises an inlet pipe and an outlet pipe;

a first valve coupled to the inlet pipe of the group of pipes;

a second valve coupled to the outlet pipe of the group of pipes; and

a support mechanism that is configured to mitigate damage to the pre-fabricated air terminal apparatus during transportation from a fabrication site, wherein the support mechanism is coupled to and in contact with the at least one of the group of pipes prior to the transportation from the fabrication site.

2. The pre-fabricated air terminal apparatus of claim 1 , wherein the inlet pipe is configured to receive a thermal transfer fluid and the outlet pipe is configured to discharge the thermal transfer fluid.

3. The pre-fabricated air terminal apparatus of claim 1 , wherein the support mechanism comprises a material that is configured to mitigate corrosion with respect to the group of pipes.

4. The pre-fabricated air terminal apparatus of claim 1 , wherein the pre-fabricated air terminal apparatus is configured according to one of: a single duct design, a fan-powered design, a double duct design, or a low-profile design.

5. The pre-fabricated air terminal apparatus of claim 1 , wherein the first valve or the second valve is at least one of: a control valve, a y-strainer valve, an isolation valve, a pressure temperature port valve, or a balancing valve.

6. The pre-fabricated air terminal apparatus of claim 1 , wherein the first valve or the second valve further comprises a flexible hose, or a hose kit.

7. The pre-fabricated air terminal apparatus of claim 1 , wherein the group of pipes is configured to support at least one of a two-way configuration, a three-way configuration, or a six-way configuration.

8. The pre-fabricated air terminal apparatus of claim 1 , wherein the pre-fabricated air terminal apparatus further comprises a sensor device or a thermometer device.

9. The pre-fabricated air terminal apparatus of claim 1 , wherein the support mechanism is configured to maintain a relative position between at least two members of the group of pipes during the transportation from the fabrication site.

10. The pre-fabricated air terminal apparatus of claim 1 , wherein the support mechanism comprises at least one of: a screw, a clamp, a rod, a bolt, a washer, a stud, a threaded insert, a threaded rod, a fastener, a brace, or a grommet.

11. The pre-fabricated air terminal apparatus of claim 1 , wherein the support mechanism is configured as at least one of a bracket, a brace, a clamp, a fastener, a grommet, or an enclosure.

12. The pre-fabricated air terminal apparatus of claim 1 , wherein the support mechanism is further coupled to a structure configured to provide support for the support mechanism, wherein the structure is at least one of: a plenum, an air terminal, a coil casing, a sheet metal structure, a duct, or a workpiece configured to provide support.

13. The pre-fabricated air terminal apparatus of claim 12 , wherein a first material of the structure differs from a second material of the at least one pipe, and wherein the support mechanism is specifically configured to mitigate galvanic corrosion between the first material and the second material.

14. The pre-fabricated air terminal apparatus of claim 1 , wherein the group of pipes are sealed prior to the transportation from the fabrication site.

15. The pre-fabricated air terminal apparatus of claim 14 , wherein the group of pipes that are sealed are pressurized prior to the transportation from the fabrication site, resulting in an improved ability to detect leaks at the installation site.

16. The pre-fabricated air terminal apparatus of claim 1 , further comprising a pressure gauge that presents a pressure within the group of pipes.

17. A thermal transfer unit, comprising:

a housing comprising a duct interface configured to interface to ductwork at an installation site, the housing comprising a coil of the thermal transfer unit;

a group of pipes that are coupled to the thermal transfer unit;

a first valve coupled to a first pipe of the group of pipes;

a second valve coupled to a second pipe, different than the first pipe, of the group of pipes; and

a support mechanism that is configured to mitigate damage to the thermal transfer unit during transportation from the fabrication site of the thermal transfer unit, wherein the support mechanism is coupled to and in contact with the at least one of the group of pipes prior to the transportation from the fabrication site.

18. The thermal transfer unit of claim 17 , wherein the group of pipes comprises an inlet pipe that is configured to receive a thermal transfer fluid and an outlet pipe that is configured to discharge the thermal transfer fluid.

19. The thermal transfer unit of claim 17 , wherein the support mechanism comprises a material that is configured to mitigate corrosion with respect to the group of pipes.

20. The thermal transfer unit of claim 17 , wherein the thermal transfer unit is configured according to one of: a single duct design, a fan-powered design, a double duct design, or a low-profile design.

21. The thermal transfer unit of claim 17 , wherein the first valve or the second valve is at least one of: a control valve, a y-strainer valve, an isolation valve, a pressure temperature port valve, or a balancing valve.

22. The thermal transfer unit of claim 17 , wherein the first valve or the second valve further comprises a flexible hose, or a hose kit.

23. The thermal transfer unit of claim 17 , wherein the group of pipes is configured to support at least one of a two-way configuration, a three-way configuration, or a six-way configuration.

24. The thermal transfer unit of claim 17 , wherein the thermal transfer unit further comprises a sensor device or a thermometer device.

25. The thermal transfer unit of claim 17 , wherein the support mechanism is configured to maintain a relative position between at least two members of the group of pipes during the transportation from the fabrication site.

26. The thermal transfer unit of claim 17 , wherein the support mechanism comprises at least one of: a screw, a clamp, a rod, a bolt, a washer, a stud, a threaded insert, a threaded rod, a fastener, a brace, or a grommet.

27. The thermal transfer unit of claim 17 , wherein the support mechanism is configured as at least one of a bracket, a brace, a clamp, a fastener, a grommet, or an enclosure.

28. The thermal transfer unit of claim 17 , wherein the support mechanism is further coupled to a structure configured to provide support for the support mechanism, wherein the structure is at least one of: a plenum, an air terminal, a coil casing, a sheet metal structure, a duct, or a workpiece configured to provide support.

29. The thermal transfer unit of claim 28 , wherein a first material of the structure differs from a second material of the at least one pipe, and wherein the support mechanism is specifically configured to mitigate galvanic corrosion between the first material and the second material.

30. The thermal transfer unit of claim 17 , wherein the group of pipes are sealed prior to the transportation from the fabrication site.

31. The thermal transfer unit of claim 30 , wherein the group of pipes that are sealed are pressurized prior to the transportation from the fabrication site, resulting in an improved ability to detect leaks at the installation site.

32. The thermal transfer unit of claim 17 , further comprising a pressure gauge that presents a pressure within the group of pipes.

Continuity (6)
Continuation 15943777 · Apr 21, 2017
Continuation 14269776 · May 5, 2014
Continuation 11972479 · Jan 10, 2008
Continuation In Part 10092933 · Mar 6, 2002
Provisional Application 60884366 · Jan 10, 2007
Related Publication 20200355394A1 · Nov 12, 2020
Cited By (1)
US 50,587