CONDENSATE DRAIN DEVICES FOR HEAT EXCHANGER COIL AND METHODS FOR MAKING THE SAME
A condensate drain device includes an elongate base having a first end, a second end and side edges extending between the first and second ends; a plurality of teeth extending away from a side edge of the base; and a lip formed on the side edge of the base opposite from the teeth. Each tooth includes a free end and two side edges. The condensate drain device is configured to be attached to a microchannel coil to collect condensate including a plurality of tubes and a plurality of fins coupled to the tubes, with each tooth being received in a space formed between two adjacent fins.
This disclosure relates generally to a heat exchange assembly, and more particularly, this disclosure relates to a condensate drain device for a heat exchanger coil for collecting and draining condensate formed on the heat exchanger coil.
BACKGROUNDHeat exchanger coils are typically used in HVAC (heat, ventilation and air conditioning) systems. For example, when air flows through a heat exchanger coil, moisture in the air can condense to liquid and collect on the coil. In some circumstances, a drain pan can be provided for collection of condensate. For example, a drain pan has been designed to be placed at a bottom of a heat exchanger coil to collect the condensate dripping down the coil. A condensate line can be used to connect an outlet of the drain pan to allow the condensate to be removed from the heat exchanger coil. Subsequently, the condensate drain line can be piped to either a floor drain or to the outside atmosphere.
SUMMARYSome embodiments of the condensate drain device can be secured to a heat exchanger coil for collecting condensate dripping from the coil. The condensate drain device can be positioned between a first header and a second header of the coil and is spaced away from both the first and second headers. This allows the condensate drain device to collect the condensate formed on an upper section between the first header and the condensate drain device, which is located above the condensate drain device. In some embodiments, the first header is located at an upper side of the coil and the second header is located at a lower side of the coil.
In particular embodiments, the condensate drain device can have a comb shaped contour including a continuous base and a plurality of teeth extending away from a side edge of the base. Each tooth can be received between a space formed between fins of the coil to allow the condensate drain device to be secured to the coil. The condensate drain device is configured to be spaced away from the second header of the coil to collect the condensate formed on the upper section located above the condensate drain device.
In some embodiments, a condensate drain device includes an elongate base including a first end, a second end and side edges extending between the first and second ends, a plurality of teeth extending away from a side edge of the base, and a lip formed on the side edge of the base opposite from the teeth. Each tooth includes a free end and two side edges. The plurality of teeth are disposed generally parallel with each other, with a gap formed between each two adjacent teeth to allow a flat tube or tubes of a heat exchanger coil to be received. In one embodiment, the condensate drain device is configured to be attached to a microchannel coil to collect condensate including a plurality of tubes and a plurality of fins coupled to the tubes, with each tooth being received in a space formed between two adjacent fins.
Some embodiments may include a heat exchanger coil assembly including a heat exchanger coil and a condensate drain device. The heat exchanger coil includes a first header, a second header, a plurality of tubes extending between the first and second headers, and a plurality of fins coupled to the tubes. The condensate drain device includes an elongate base including a first end, a second end and side edges extending between the first and second ends; and a plurality of teeth extending away from a side edge of the base. The plurality of teeth are disposed generally parallel with each other. The condensate drain device is attached to the heat exchanger coil at a location between the first and second headers and spaced away from both the first and second headers.
Other embodiments may include a method for assembling a condensate drain device to a heat exchanger coil. The heat exchanger coil includes a plurality of tubes and a plurality of fins coupled to the tubes. The method includes inserting a plurality of teeth of the condensate drain device in corresponding spaces formed between adjacent fins to allow the condensate drain device to be attached to the heat exchanger coil; and securing the condensate drain device to the heat exchanger coil. In some embodiments, an upper surface of the condensate drain device is sloped at an angle with a horizontal direction along which the first and second headers extend.
These and other embodiments described herein may provide one or more of the following benefits. First, the condensate drain device can be located between the first and second headers of the heat exchanger coil. This helps drain condensate down to the device from an upper section of the coil located between the first header and the condensate drain device, thereby preventing the moisture from being carried over to the conditioned space. Second, the condensate drain device can be oriented at an angle with a horizontal direction, when assembled with the heat exchanger coil. This helps facilitate drainage of the condensate at one end of the condensate drain device. Third, the condensate drain device can be located at a leading air side of the heat exchanger coil, such that the condensate can be blown away from the heat exchanger coil, instead of being blown toward the coil. This helps prevent condensate from flowing back to the coil which may subsequently cause frost to form on the coil.
The details of one or more embodiments are set forth in the accompanying drawings and the description below. Other features, objects and advantages of the embodiments will be apparent from the description and drawings, and from the claims.
Like reference symbols in the various drawings indicate like elements.
DETAILED DESCRIPTIONReferences are made to the accompanying drawings that form a part hereof, and in which is shown by way of illustration of the embodiments in which the methods and systems described herein may be practiced. The term “upper section” refers to a section of the heat exchanger coil defined between a first header and a condensate drain device, which is located above the condensate drain device. When the condensate drain device is located approximately half way between the first header and a second header, the distance between the condensate drain device and the first header is generally equal to a corresponding distance between the drain device and the second header. In some embodiments, the condensate drain device is located closer to the first header than to the second header. In these embodiments, the distance between the condensate drain device and the first header is smaller than a distance between the condensate drain device and the second header. In some embodiments, the first header is located at an upper side of the coil and the second header is located at a lower side of the coil. Solely for the convenience of description, the first and second headers will be described as upper and lower headers, respectively, in this disclosure.
Referring to
The condensate drain device 10 is particularly useful when used with tall evaporator coils. In some cases, the height H of the tall evaporator coils can range generally greater than about 30 inches. For these relatively tall evaporator coils, condensate water may not be able to drip from the top of the coil down to a drain pan located at the bottom of the coil before being blown off the coil and into a conditioned space. As a result, the moisture can be carried over to the conditioned space. The condensate drain device 10 helps catch condensate from an upper section 18 of the coil located between the upper header 14 and the condensate drain device 10 above the condensate drain device 10 and then drain the condensate, thereby preventing the moisture from being carried over to the conditioned space.
As shown in
Referring to
In the embodiments as shown in
The condensate drain device 10 also includes an upper surface 60. When assembled to the coil 30, the upper surface 60 is sloped from the first end 52 of the condensate drain device downwardly to the second end 54 to direct the condensate to the second end 54. The second end 54 of the condensate drain device 10 can be properly sealed with the second end 32 of the coil 30 by an end wall 71. A drainage conduit 70 including an inlet 72 is located proximal the second end 54 to receive condensate collected by the upper surface 60.
The condensate drain device 10 may be made from a flexible compliant material, for example, a plastic or polycarbonate material such as Lexan, a metal material, or fiber glass. If using plastic material, the condensate drain device 10 can be made in one piece by injection molding.
To assemble the condensate drain device 10 to the coil 30, the condensate drain device 10 can be obtained by cutting an injection molded member to a suitable length for fitting with a width WC of the coil 30. The condensate drain device 10 is oriented to slope from a relatively high point 80 located at the first end 31 of the coil 30 to a relatively low point 82 located at the second end 32 of the coil 30 to direct condensate to the low point 82, with each tooth 22 of the condensate drain device 10 being received in a corresponding space 28 formed between adjacent tubes 36 of the coil 30 (referring to
It is to be understood that the upper surface 60 of the condensate drain device 10 can be oriented at any angle relative to the flat tubes 36, as long as the upper surface 60 is oriented at a non-right angle relative to the gravity direction. For example, in case the condensate drain device 10 is oriented perpendicular relative to the flat tubes 36, the upper surface 60 of the condensate drain device 10 can still be oriented at an angle with a horizontal direction. This can be done by tilting the coil 30 such that the tubes 36 are oriented at an angle relative to the gravity direction.
Aspects:It is noted that any of aspects 1-7 below can be combined with any of aspects 8-12 and aspects 13-16. Also, any of aspects 8-12 below can be combined with any of aspects 13-16.
1. A heat exchanger coil assembly, comprising:
a heat exchanger coil including:
-
- a first header;
- a second header;
- a plurality of tubes extending between the first and second headers; and
- a plurality of fins coupled to the tubes, and
a condensate drain device including:
-
- an elongate base including a first end, a second end and side edges extending between the first and second ends; and
- a plurality of teeth extending away from a side edge of the base, the plurality of teeth being disposed parallel with each other,
wherein the condensate drain device is attached to the heat exchanger coil at a location between the first and second headers and spaced away from both the first and second headers, and
wherein the elongate base is oriented such that an upper surface of the elongate base slopes from the first end toward the second end at an angle relative to a horizontal direction.
2. The heat exchanger coil assembly of aspect 1, wherein a height of the heat exchanger coil is greater than 30 inches.
3. The heat exchanger coil assembly of any of aspects 1-2, wherein each of the teeth is received in a space formed between two adjacent fins of the heat exchanger coil.
4. The heat exchanger coil assembly of aspect 3, wherein the teeth have a length smaller than a depth of the fin, so that when each of the teeth is received in the corresponding space, one of the side edges of the elongate base engages with a side edge of the corresponding flat tube.
5. The heat exchanger coil assembly of any of aspects 3-4, wherein each of the plurality of teeth has a width slightly smaller than a distance between the two respective adjacent tubes of the heat exchanger coil, thereby allowing side edges of each of the teeth to have an interference fit with corresponding side walls of the two respective adjacent tubes.
6. The heat exchanger coil assembly of any of aspects 1-5, wherein each of the plurality of teeth has a uniform width from the base to a respective free end of the respective tooth.
7. The heat exchanger coil assembly of any of aspects 1-6, wherein a height of the heat exchanger coil is greater than 30 inches.
8. A condensate drain device, comprising:
an elongate base including a first end, a second end and side edges extending between the first and second ends;
a plurality of teeth extending away from a side edge of the base, each tooth includes a free end and two side edges; and
a lip formed on the side edge of the base opposite from the teeth,
wherein the condensate drain device is configured to be attached to a heat exchanger coil to collect condensate including a plurality of tubes and a plurality of fins coupled to the tubes, with each tooth being received in a space formed between two adjacent fins.
9. The condensate drain device of aspect 8, wherein each of the plurality of teeth has a uniform width from the base to the respective free end of the respective tooth.
10. The condensate drain device of any of aspects 8-9, wherein the plurality of teeth are spaced apart by about the same distance and are generally parallel to each other.
11. The condensate drain device of any of aspects 8-10, further comprising an end wall attached to the second end of the base.
12. The condensate drain device of any of aspects 8-11, wherein the heat exchanger coil is a microchannel coil.
13. A method for assembling a condensate drain device to a heat exchanger coil, the heat exchanger coil including a plurality of tubes and a plurality of fins coupled to the tubes, comprising:
inserting a plurality of teeth of the condensate drain device in corresponding spaces formed between adjacent fins to allow the condensation drain device to be attached to the heat exchanger coil; and
securing the condensate drain device to the heat exchanger coil,
wherein the condensate drain device further includes an elongate base which has a first end and a second end, the elongate base being oriented such that an upper surface of the elongate base slopes from the first end toward the second end at an angle relative to a horizontal direction.
14. The method of aspect 13, wherein the condensate drain device comprises:
an elongate base including a first end, a second end and side edges extending between the first and second ends;
a plurality of teeth extending away from a side edge of the base, each tooth includes a free end and two side edges; and
a lip formed on the side edge of the base opposite from the teeth.
15. The method of aspect 14, wherein each of the plurality of teeth has a uniform width from the base to the respective free end of the respective tooth.
16. The method of any of aspects 14-15, wherein the plurality of teeth are spaced apart by about the same distance and are generally parallel to each other.
A number of embodiments of the invention have been described. Nevertheless, it is to be understood that various modifications may be made without departing from the spirit and scope of the invention. For example, in other embodiments, the lip can be any suitable configuration that can prevent the condensate from flowing over on the side edge. In another example, some embodiments of the condensate drain device 10 can be retained to the heat exchanger coil 12 by other fastening methods, such as glue or epoxy, or the like. In still another example, other types of drainage outlet can be used with the condensate drain device 10, for example, bottom drain outlet or the like. Accordingly, other embodiments are within the scope of the following claims.
Claims
1. A heat exchanger coil assembly, comprising:
- a heat exchanger coil including: a first header; a second header; a plurality of tubes extending between the first and second headers; and a plurality of fins coupled to the tubes, and
- a condensate drain device including: an elongate base including a first end, a second end and side edges extending between the first and second ends; and a plurality of teeth extending away from a side edge of the base, the plurality of teeth being disposed parallel with each other,
- wherein the condensate drain device is attached to the heat exchanger coil at a location between the first and second headers and spaced away from both the first and second headers, and
- wherein the elongate base is oriented such that an upper surface of the elongate base slopes from the first end toward the second end at an angle relative to a horizontal direction.
2. The heat exchanger coil assembly of claim 1, wherein a height of the heat exchanger coil is greater than 30 inches.
3. The heat exchanger coil assembly of claim 1, wherein each of the teeth is received in a space formed between two adjacent fins of the heat exchanger coil.
4. The heat exchanger coil assembly of claim 3, wherein the teeth have a length smaller than a depth of the fin, so that when each of the teeth is received in the corresponding space, one of the side edges of the elongate base engages with a side edge of the corresponding flat tube.
5. The heat exchanger coil assembly of claim 3, wherein each of the plurality of teeth has a width slightly smaller than a distance between the two respective adjacent tubes of the heat exchanger coil, thereby allowing side edges of each of the teeth to have an interference fit with corresponding side walls of the two respective adjacent tubes.
6. The heat exchanger coil assembly of claim 1, wherein each of the plurality of teeth has a uniform width from the base to a respective free end of the respective tooth.
7. The heat exchanger coil assembly of claim 1, wherein a height of the heat exchanger coil is greater than 30 inches.
8. A condensate drain device, comprising:
- an elongate base including a first end, a second end and side edges extending between the first and second ends;
- a plurality of teeth extending away from a side edge of the base, each tooth includes a free end and two side edges; and
- a lip formed on the side edge of the base opposite from the teeth,
- wherein the condensate drain device is configured to be attached to a heat exchanger coil to collect condensate including a plurality of tubes and a plurality of fins coupled to the tubes, with each tooth being received in a space formed between two adjacent fins.
9. The condensate drain device of claim 8, wherein each of the plurality of teeth has a uniform width from the base to the respective free end of the respective tooth.
10. The condensate drain device of claim 8, wherein the plurality of teeth are spaced apart by about the same distance and are generally parallel to each other.
11. The condensate drain device of claim 8, further comprising an end wall attached to the second end of the base.
12. The condensate drain device of claim 8, wherein the heat exchanger coil is a microchannel coil.
13. A method for assembling a condensate drain device to a heat exchanger coil, the heat exchanger coil including a plurality of tubes and a plurality of fins coupled to the tubes, comprising:
- inserting a plurality of teeth of the condensate drain device in corresponding spaces formed between adjacent fins to allow the condensation drain device to be attached to the heat exchanger coil; and
- securing the condensate drain device to the heat exchanger coil,
- wherein the condensate drain device further includes an elongate base which has a first end and a second end, the elongate base being oriented such that an upper surface of the elongate base slopes from the first end toward the second end at an angle relative to a horizontal direction.
14. The method of claim 13, wherein the condensate drain device comprises:
- an elongate base including a first end, a second end and side edges extending between the first and second ends;
- a plurality of teeth extending away from a side edge of the base, each tooth includes a free end and two side edges; and
- a lip formed on the side edge of the base opposite from the teeth.
15. The method of claim 14, wherein each of the plurality of teeth has a uniform width from the base to the respective free end of the respective tooth.
16. The method of claim 14, wherein the plurality of teeth are spaced apart by about the same distance and are generally parallel to each other.
Type: Application
Filed: Dec 20, 2013
Publication Date: Jul 7, 2016
Inventors: Robert Fredrick SCHULT (Clarksville, TN), Jun WANG (Clarksville, TN), Roger J. VOORHIS (Clarksville, TN), Justin Slade WINTERS (Adams, TN)
Application Number: 14/654,782