Multi-zone circuiting for a plate-fin and continuous tube heat exchanger
US-10145621-B2 · Dec 4, 2018 · US
US11359836B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11359836-B2 |
| Application number | US-202016984672-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 4, 2020 |
| Priority date | Aug 4, 2020 |
| Publication date | Jun 14, 2022 |
| Grant date | Jun 14, 2022 |
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A heat exchanger having a first heat exchanger tube and a second heat exchanger tube is disclosed. The first heat exchanger tube can have a first leg, a second leg, and a bend section, and the bend section of the first heat exchanger tube can include three or more bends, each of the three or more bends having a corresponding bend angle that is less than or equal to approximately 90 degrees. The second heat exchanger tube can have a first leg, a second leg, and a bend section, and the bend section of the second heat exchanger tube can include three or more bends, each of the three or more bends having a corresponding bend angle that is less than or equal to approximately 90 degrees.
Opening claim text (preview).
What is claimed is: 1. A heat exchanger comprising: a first heat exchanger tube having a first leg, a second leg, and a bend section, the bend section including three or more bends, each of the three or more bends of the first heat exchanger tube having a corresponding bend angle that is less than or equal to approximately 90 degrees, wherein the first leg, the second leg, and the bend section of the first heat exchanger form a first fluid flow path within the first heat exchanger tube, the first fluid flow path having: a first straight section corresponding to the first leg of the first heat exchanger tube, a first bend of less than or equal to approximately 90 degrees, the first bend corresponding to a first bend of the three or more bends of the first heat exchanger tube, a second bend of less than or equal to approximately 90 degrees, the second bend corresponding to a second bend of the three or more bends of the first heat exchanger tube, a third bend of less than or equal to approximately 90 degrees, the third bend corresponding to a third bend of the three or more bends of the first heat exchanger tube, and a second straight section corresponding to the second leg of the first heat exchanger tube; and a second heat exchanger tube having a first leg, a second leg, and a bend section, the bend section including three or more bends, each of the three or more bends of the second heat exchanger tube having a corresponding bend angle that is less than or equal to approximately 90 degrees, wherein the first leg, the second leg, and the bend section of the second heat exchanger tube form a second fluid flow path within the second heat exchanger tube, the second fluid flow path having: a first straight section corresponding to the first leg of the second heat exchanger tube, a first bend of less than or equal to approximately 90 degrees, the first bend corresponding to a first bend of the three or more bends of the second heat exchanger tube, a second bend of less than or equal to approximately 90 degrees, the second bend corresponding to a second bend of the three or more bends of the second heat exchanger tube, a third bend of less than or equal to approximately 90 degrees, the third bend corresponding to a third bend of the three or more bends of the second heat exchanger tube, and a second straight section corresponding to the second leg of the second heat exchanger tube. 2. The heat exchanger of claim 1 , wherein the first bend of the three or more bends of the first heat exchanger tube has a bend angle of approximately 90 degrees; the second bend of the three or more bends of the first heat exchanger tube has a first acute bend angle; the third bend of the three or more bends of the first heat exchanger tube has a second acute bend angle; the first bend of the three or more bends of the second heat exchanger tube has a bend angle of approximately 90 degrees; the second bend of the three or more bends of the second heat exchanger tube has a first acute bend angle; and the third bend of the three or more bends of the second heat exchanger tube has a second acute bend angle. 3. The heat exchanger of claim 1 , wherein the bend section of at least one of the first heat exchanger tube and the second heat exchanger tube includes at least one substantially straight portion. 4. The heat exchanger of claim 3 , wherein: the bend section of the first heat exchanger tube includes: a first substantially straight portion disposed between the first bend of the three or more bends and the second bend of the three or more bends; and a second substantially straight portion disposed between the second bend of the three or more bends and a third bend of the three or more bends, and the bend section of the second heat exchanger tube includes: a first substantially straight portion disposed between the first bend of the three or more bends and the second bend of the three or more bends; and a second substantially straight portion disposed between the second bend of the three or more bends and a third bend of the three or more bends. 5. The heat exchanger of claim 1 , wherein: the first leg of the first heat exchanger tube is located at a height that is greater than a height of the second leg of the first heat exchanger tube, and the second leg of the second heat exchanger tube is located at a height that is greater than a height of the first leg of the second heat exchanger tube. 6. The heat exchanger of claim 5 , wherein fins are disposed along at least a portion of the first leg of the first heat exchanger tube and at least a portion of the second leg of the second heat exchanger tube. 7. The heat exchanger of claim 5 , wherein ridges are disposed along at least a portion of the first leg of the first heat exchanger tube and at least a portion of the second leg of the second heat exchanger tube. 8. The heat exchanger of claim 1 , wherein: a length of the first leg of the first heat exchanger tube is greater than a length of the second leg of the first heat exchanger tube, and a length of the second leg of the second heat exchanger tube is greater than a length of the first leg of the second heat exchanger tube. 9. The heat exchanger of claim 1 , wherein at least one of the first heat exchanger tube and the second heat exchanger tube has a non-zero incline angle with respect to horizontal when viewed from a side of the first heat exchanger tube or the second heat exchanger tube. 10. The heat exchanger of claim 9 , wherein the incline angle is in a range between approximately 0.5 degree and approximately 5 degrees. 11. The heat exchanger of claim 1 , wherein an incline angle of the first heat exchanger tube is different from an incline angle of the second heat exchanger tube. 12. The heat exchanger of claim 1 , wherein at least one of the first heat exchanger tube and the second heat exchanger tube has a non-zero tilt angle with respect to vertical when viewed from an end of the first heat exchanger tube or the second heat exchanger tube. 13. The heat exchanger of claim 12 , wherein the tilt angle is in a range between approximately 0.5 degree and approximately 10 degrees. 14. The heat exchanger of claim 12 , wherein the tilt angle of the first heat exchanger tube is different from the tilt angle of the second heat exchanger tube. 15. The heat exchanger of claim 1 , wherein: the first heat exchanger tube is one of a first plurality of heat exchanger tubes, the second heat exchanger tube is one of a second plurality of heat exchanger tubes, none of the first plurality of heat exchanger tubes is adjacent to another of the first plurality of heat exchanger tubes, and none of the second plurality of heat exchanger tubes is adjacent to another of the second plurality of heat exchanger tubes. 16. The heat exchanger of claim 1 , wherein: the first heat exchanger tube is one of a first plurality of heat exchanger tubes, the second heat exchanger tube is one of a second plurality of heat exchanger tubes, and a U-bend heat exchanger tube is disposed between each of the first plurality of heat exchanger tubes and the second plurality of heat exchanger tubes such that each of the first plurality of heat exchanger tubes is adjacent to at least one U-bend heat exchanger tube and each of the second plurality of heat exchanger tubes is adjacent to at least one U-bend heat exchanger tube. 17. The heat exchanger of claim 1 , wherein: the first heat exchanger tube and the second heat exchanger tube are two of a plurality of heat exchanger tubes, and the plura
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