IP Library › Granted Patent US 10,240,850
Granted Patent B1
US 10,240,850 · App. 14/211,972 · Granted Mar 26, 2019

Supplemental refrigeration heat sink and related systems and methods

Inventor: Joseph P. Stine (Orlando, FL)
F25D17/062F24F5/0021F25D11/00F25D11/02F25D11/022F25D11/025F25D11/027
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Quick Facts
Patent No.
US 10,240,850
App. No.
14/211,972
Granted
Mar 26, 2019
Kind
B1
Abstract

A supplemental refrigeration heat sink includes a plurality of sealed tubes filled with a compound and arranged so as to extend across the top inside a refrigerated box. The compound is preferably a phase change compound with a melting point proximate to and higher than the average return air temperature. During the cooling phase of the box, the supplemental heat sink tubes are cooled, with the phase change material freezing or nearly freezing. During the heating phase, cooling fans can be secured and the phase change material readily absorbs heat from the box, slowing the temperature rise in the box.

Claims (23)

1. A refrigeration unit comprising:

a box having a top and enclosing a refrigeration volume;

a refrigeration system connected with the box and operable to generate and introduce cooled air into the refrigeration volume during a cooling phase, a heating phase occurring after generation of cooled air is stopped;

a thermostat configured to measure an air temperature within the refrigeration volume and in signal communication with the refrigeration system to initiate the cooling phase upon reaching a high temperature set point and to stop generation of cooled air upon reaching a low temperature set point; and

a supplemental refrigeration heat sink including at least one sealed tube filled with a phase change compound arranged in the refrigeration volume proximate to the top of the box.

2. The refrigeration unit of claim 1 , wherein the refrigeration system includes a cooling element for generating the cooled air by heat exchange therewith and at least one cooling fan for introducing the cooled air into the refrigeration volume.

3. The refrigeration unit of claim 2 , wherein the refrigeration system secures the cooling fan during the heating phase.

4. The refrigeration unit of claim 2 , wherein the cooling element evaporator.

5. The refrigeration unit of claim 1 , wherein a melting point of the phase change compound is approximately 3 degrees Fahrenheit (F) higher than an average return air temperature.

6. The refrigeration unit of claim 5 , wherein the phase change compound has a specific heat capacity of at least 3 British Thermal Units per degree F. per pound (BTU/(F°—lb)).

7. The refrigeration unit of claim 1 , wherein the at least one sealed tube has a circular cross-section.

8. The refrigeration unit of claim 1 , wherein the least one sealed tube is elongated along a longitudinal axis thereof.

9. The refrigeration unit of claim 8 , wherein the longitudinal axis of the at least one sealed tube is perpendicular to a direction of cooled air flow through the box.

10. The refrigeration unit of claim 1 , wherein the supplemental refrigeration heat sink includes a plurality of additional sealed tubes filled with the phase change compound and arranged in the refrigeration volume proximate to the top of the box.

11. The refrigeration unit of claim 1 , wherein the at least one tube is made of metal.

12. The refrigeration unit of claim 1 , wherein the phase change compound includes at least one of: a decane, glycerin and propylene glycol.

13. The refrigeration unit of claim 12 , wherein the phase change compound includes a mixture of the decane with liquid paraffin.

14. The refrigeration unit of claim 12 , wherein the phase change compound further includes water.

15. A method for enhancing temperature control in a refrigeration unit using a supplemental refrigeration heat sink, the method comprising:

arranging a plurality of sealed tubes filled with a phase change compound in a refrigeration volume of a box, proximate to a top thereof;

introducing cooled air into the box using at least one fan during a cooling phase, such that the phase change compound releases heat and undergoes at least partial freezing; and

securing the cooling phase and stopping the at least one fan to initiate a heating phase, during which the phase change compound absorbs heat and undergoes at least partial melting.

16. The method of claim 15 , wherein the at least one fan includes a plurality of fans, and all of the plurality of fans are stopped when the cooling phase is secured.

Continuity (1)
Provisional Application 61787887 · Mar 15, 2013
Cited By (1)
US 12,566,016