IP Library Granted Patent US 10,006,721
Granted Patent B2
US 10,006,721 · App. 14/594,186 · Granted Jun 26, 2018

Closed-cycle condenser dryer with heat regeneration

Inventors: Arye Kohavi (Neve Monosson, IL); Sharon Dulberg (Beer Sheva, IL)
Assignee: WATER-GEN LTD.
F28F3/086D06F58/24D06F58/26F16L53/00F24F3/1405Y10T137/6579
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Quick Facts
Patent No.
US 10,006,721
App. No.
14/594,186
Granted
Jun 26, 2018
Kind
B2
Abstract

A drying apparatus includes a compartment for containing objects to be dried, a closed-loop air pathway and a regeneration heat exchanger. The closed-loop air pathway includes a cooling element and a heating element, and is configured to extract from the compartment air that includes moisture in the form of vapor, to evacuate heat energy from the extracted air to an external fluid flow by cooling using the cooling element so as to remove at least some of the moisture from the air, to reheat the air using the heating element, and to re-introduce the reheated air into the compartment. The regeneration heat exchanger is inserted in the closed-loop air pathway and is configured to transfer heat from the air extracted from the compartment to the air exiting the cooling element in the closed-loop air pathway.

Claims (32)

1. A drying apparatus, comprising:

at least first and second compartments for containing objects to be dried;

a closed-loop air pathway, which is configured to cycle air in cascade through at least the first and second compartments, to extract air from the first compartment, to dry and reheat the air extracted from the first compartment, and to introduce the dried and reheated air into the second compartment; and

a regeneration heat exchanger which is inserted in the closed-loop air pathway and is configured to dry and reheat the air extracted from the first compartment using heat of the air extracted from the second compartment.

2. The drying apparatus according to claim 1 , and comprising a second regeneration heat exchanger, which is inserted in the closed-loop air pathway and is configured to dry and reheat air entering the first compartment using heat of the air cooled in the regeneration heat exchanger.

3. The drying apparatus according to claim 1 , and comprising a regeneration heat exchanger, which is inserted in the closed-loop air pathway and is configured to dry and reheat the air entering the first compartment using heat of air extracted from the second compartment.

4. The drying apparatus according to claim 1 , and comprising a heating element, which is inserted in the closed-loop air pathway and is configured to heat the air prior to entry to the second compartment.

5. The drying apparatus according to claim 1 , and comprising a cooling element, which is inserted in the closed-loop air pathway and is configured to remove moisture from the air of the closed-loop air pathway by evacuating heat from the air after extraction from the second compartment and before entering the first compartment.

6. A drying apparatus, comprising:

a compartment for containing objects to be dried;

a closed-loop air pathway, which comprises a cooling element and a heating element, and which is configured to extract from the compartment air that includes moisture in the form of vapor, to evacuate heat energy from the extracted air to an external fluid flow by cooling using the cooling element so as to remove at least some of the moisture from the air, to reheat the air using the heating element, and to re-introduce the reheated air into the compartment; and

a regeneration heat exchanger, which is inserted in the closed-loop air pathway and is configured to transfer heat from the air extracted from the compartment to the air exiting the cooling element in the closed-loop air pathway;

wherein the cooling element comprises a cooled core that is mounted inside the regeneration heat exchanger,

wherein the core is configured to cool the air flowing through the regeneration heat exchanger, and

wherein the regeneration heat exchanger is configured to cool the extracted air upstream of the core by transferring heat to the cooled air downstream of the core, and to heat the extracted air downstream of the core using heat of the extracted air upstream of the core.

7. The drying apparatus according to claim 6 , wherein at least one of the regeneration heat exchanger and the cooling element is fabricated at least partially from a material having low thermal-conductivity.

8. The drying apparatus according to claim 6 , wherein at least one of the regeneration heat exchanger and the cooling element is fabricated at least partially from plastic.

9. The drying apparatus according to claim 6 , wherein the regeneration heat exchanger and the cooling element are fabricated jointly in a single mechanical assembly.

10. The drying apparatus according to claim 6 , wherein, by transferring the heat, the regeneration heat exchanger is configured to at least one of cool the air extracted from the compartment thus producing condensate water therefrom, and heat the air exiting the cooling element.

11. The drying apparatus according to claim 6 , wherein the cooling element comprises a cooling heat exchanger that is configured to cool the extracted air by heat exchange with the external fluid flow.

12. The drying apparatus according to claim 6 , wherein the heating element is configured to heat the air before re-introduction into the compartment at least partially by transferring heat from another fluid flow.

13. The drying apparatus according to claim 12 , wherein the other fluid flow comprises the air in the closed-loop air pathway prior to the cooling element.

14. The drying apparatus according to claim 12 , wherein the other fluid flow comprises an external fluid flow exiting the cooling element.

15. The drying apparatus according to claim 6 , wherein the cooling element is configured to cool the air at least partially by transferring heat to another fluid flow.

16. The drying apparatus according to claim 6 , and comprising a restrictor for allowing volumetric expansion or contraction of the closed-loop air pathway.

17. The drying apparatus according to 16 , wherein one side of the restrictor is connected to a location of driest and coolest air in the closed-loop air pathway.

18. The drying apparatus according to claim 16 , wherein one side of the restrictor is connected to the external fluid flow heated by the cooling element.

19. The drying apparatus according to claim 16 , and comprising an enclosure that packages the drying apparatus and is arranged to emit and absorb external air, wherein one side of the restrictor is configured to exchange air with the inner side of the enclosure.

20. The drying apparatus according to claim 6 , wherein the cooling element is configured to convert at least some of the heat energy evacuated from the air of the closed-loop air pathway into electricity.

21. The drying apparatus according to claim 6 , and comprising an external fluid pathway, which is configured to exploit at least some of the heat energy added in the drying apparatus to the external fluid, by circulating the external fluid via an external system.

22. The drying apparatus according to claim 6 , and comprising a fluid pathway, which is configured to exploit at least some of the heat energy emitted from the closed-loop air pathway by storing the heat energy in one or more heat reservoirs.

23. The drying apparatus according to claim 22 , wherein the heat reservoirs comprise at least one of a fluid, a Phase Changing Material (PCM) and a material that stores the heat energy by reacting chemically.

Assignments (2)
CHANGE OF NAME Recorded Sep 9, 2020
From: WATER-GEN LTD.
To: WATERGEN LTD.
Reel/Frame 053828/0524 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2015
From: KOHAVI, ARYE; DULBERG, SHARON
To: WATER-GEN LTD.
Reel/Frame 034678/0620 →
Continuity (2)
Continuation In Part PCTIB2014059620 · Mar 11, 2014
Related Publication 20150259847A1 · Sep 17, 2015