CONDENSATE DRAIN PAN PORT
20180202704 ยท 2018-07-19
Inventors
Cpc classification
F25D21/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/222
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24D19/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F25D21/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An HVAC/R unit, a condensate drain pan port insert, and a condensate drain pan are provided. The condensate drain pan includes a condensate drain pan port with a port housing having an upper end and a lower end, a condensate wall extending upward from the lower end, and an air wall extending downward from the upper end and being configured to limit an airflow through the port housing.
Claims
1. An HVAC/R unit, comprising: an evaporator coil; and a port configured to remove condensate away from the evaporator coil, the port, comprising: a port housing having an upper end and a lower end; a condensate wall extending upward from the lower end; and an air wall extending downward from the upper end and being configured to limit an airflow through the port housing.
2. The HVAC/R unit of claim 1, wherein the condensate wall includes an upper edge and the air wall includes a lower edge.
3. The HVAC/R unit of claim 2, wherein the upper edge is substantially radially aligned with the lower edge.
4. The HVAC/R unit of claim 2, wherein the upper edge is radially offset a predetermined radial distance from the lower edge.
5. The HVAC/R unit of claim 2, wherein the upper edge and the lower edge are straight.
6. The HVAC/R unit of claim 1, wherein the condensate wall is axially spaced a predetermined axial distance from the air wall.
7. The HVAC/R unit of claim 1, further comprising a drainage opening in the condensate wall.
8. A condensate drain pan port insert, comprising: a condensate wall extending to an upper edge along a first plane; an air wall extending to a lower edge along a second plane spaced axially from the first plane and being configured to limit an airflow through the port housing.
9. The condensate drain pan port insert of claim 8, further comprising at least one connecting member extending between the condensate wall and the air wall.
10. The condensate drain pan port insert of claim 8, further comprising a drainage opening in the condensate wall.
11. The condensate drain pan port insert of claim 8, further comprising an air wall support extending from the lower edge along the second plane.
12. A condensate drain pan, comprising: an outer wall having a condensate drain pan port, the condensate drain pan port having a port housing having an upper end and a lower end; a condensate wall extending upward from the lower end; and an air wall extending downward from the upper end and configured to limit an airflow through the port housing.
13. The condensate drain pan of claim 12, wherein the condensate wall includes an upper edge and the air wall includes a lower edge.
14. The condensate drain pan of claim 13, wherein the upper edge is substantially radially aligned with the lower edge.
15. The condensate drain pan of claim 13, wherein the upper edge is radially offset a predetermined radial distance from the lower edge.
16. The condensate drain pan of claim 13, wherein the upper edge and the lower edge are straight.
17. The condensate drain pan of claim 12, wherein the condensate wall is axially spaced a predetermined axial distance from the air wall.
18. The condensate drain pan of claim 12, further comprising a drainage opening in the condensate wall.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0012] The embodiments and other features, advantages and disclosures contained herein, and the manner of attaining them, will become apparent and the present disclosure will be better understood by reference to the following description of various exemplary embodiments of the present disclosure taken in conjunction with the accompanying drawings, wherein:
[0013]
[0014]
[0015]
[0016]
DETAILED DESCRIPTION OF THE DISCLOSED EMBODIMENTS
[0017] For the purposes of promoting an understanding of the principles of the present disclosure, reference will now be made to the embodiments illustrated in the drawings, and specific language will be used to describe the same. It will nevertheless be understood that no limitation of the scope of this disclosure is thereby intended.
[0018] Referring now to
[0019] Referring now to
[0020] The drain pan port 16 includes a condensate wall 28 extending upward from the lower end 26. The condensate wall 28 is configured to at least partially impede the flow of collected condensate in the drain pan 10 through the drain pan port 16. The condensate wall 28 includes an upper edge 36. In the illustrated embodiment, the upper edge 36 is straight. In one or more embodiments not illustrated, the upper edge 36 is curved, includes multiple edges, or is otherwise not straight. As best illustrated in
[0021] The drain pan port 16 further includes an air wall 30 extending downward from the upper end 24. The air wall 30 is configured to limit an airflow through the port housing 22. The air wall 30 includes a lower edge 32. In the illustrated embodiment, the lower edge 32 is straight. In one or more embodiments not illustrated, the lower edge 32 is curved, includes multiple edges, or is otherwise not straight. As best illustrated in
[0022] The upper edge 36 is substantially radially aligned with the lower edge 32 in one or more embodiments. As best illustrated in
[0023] As further illustrated in
[0024] Referring now to
[0025] The insert 48 includes a drainage opening 52 in the condensate wall 28 in the illustrated embodiment. Although not illustrated, one or more of the embodiments of the drain pan port 16 described above also include the drainage opening 52. The drainage opening 52 is configured as a slot extending vertically in the illustrated embodiment. The drainage opening 52 is configured as another shape and/or size in additional embodiments not illustrated. The drainage opening 52 is sized and shaped to allow a remainder of collected condensate to flow through the insert 48 while significantly restricting the flow of air through the drainage opening 52. Therefore, a condensate drain pan coupled to the insert 48 may drain more completely by allowing the collected condensate to be removed through the drain opening 52. Although not illustrated, in one embodiment, the area of the opening of the drainage opening 52 is less than an area of the opening between the condensate wall 28 and the air wall 30.
[0026] As further illustrated in
[0027] One will appreciate that the embodiments described in the present disclosure provide the condensate drain pan 10, condensate drain pan port 16, and condensate drain pan port insert 48 to improve flow of collected condensate through the condensate drain pan port 16 during one or more conditions. Such conditions may exist where flow of collected condensate through the drain pan port 16 is impeded by airflow from the area above condensate drain pan 10, a high pressure condition present within the HVAC/R equipment, and/or another condition impeding flow through the drain pan port 16.
[0028] While the invention has been illustrated and described in detail in the drawings and foregoing description, the same is to be considered as illustrative and not restrictive in character, it being understood that only certain embodiments have been shown and described and that all changes and modifications that come within the spirit of the invention are desired to be protected.