IP Library Granted Patent US 12,287,139
Granted Patent B1
US 12,287,139 · App. 19/011,184 · Granted Apr 29, 2025

Rechargeable thermal battery systems for use in transporting or storing perishable items

Inventors: Alfred Scott Queen (Asheboro, NC); Byron C. Owens (Asheboro, NC)
Assignee: PHASESTOR LLC
F25D16/00B60H1/00264F25D11/02
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Quick Facts
Patent No.
US 12,287,139
App. No.
19/011,184
Granted
Apr 29, 2025
Kind
B1
Abstract

An apparatus includes a cargo area with a heat exchanger; a thermal battery system having a phase change material (PCM) with first and second heat exchangers embedded in the PCM; fluid conduits defining fluid passageways interconnecting the cargo area heat exchanger and the first PCM-embedded heat exchanger; and a pump creating a fluid flow through the fluid conduits between the cargo area heat exchanger and the first PCM-embedded heat exchanger. The apparatus also includes external ports configured for connecting to an external charging source for charging the PCM; and fluid conduits defining fluid passageways interconnecting the external ports and the second PCM-embedded heat exchanger. The first PCM-embedded heat exchanger, pump, and cargo area heat exchanger form part of a first closed-loop circuit for transferring heat between the cargo area and the thermal battery system. The second PCM-embedded heat exchanger and external ports do not part of the first closed-loop circuit.

Claims (11)

1. An apparatus having a storage area for receiving and maintaining items at one or more temperatures, comprising:

(a) a storage area heat exchanger located in air communication with the storage area;

(b) a thermal battery system comprising a thermal battery comprising a phase change material (PCM) with first and second heat exchangers embedded in the PCM;

(c) a first plurality of fluid conduits defining fluid passageways interconnecting in fluid communication the storage area heat exchanger and the first PCM-embedded heat exchanger;

(d) a pump onboard the apparatus and arranged in fluid communication with the first plurality of fluid conduits and configured to create a fluid flow through the first plurality of fluid conduits between the storage area heat exchanger and the first PCM-embedded heat exchanger;

(e) a pair of external ports configured for connecting to an external charging source for charging the PCM of the thermal battery system; and

(f) a second plurality of fluid conduits defining fluid passageways interconnecting in fluid communication the external ports and the second PCM-embedded heat exchanger;

(g) wherein the first PCM-embedded heat exchanger, pump, storage area heat exchanger, and the first plurality of fluid conduits are part of a first closed-loop circuit for transferring heat between the storage area and the thermal battery system; and

(h) wherein the second PCM-embedded heat exchanger, external ports, and the second plurality of fluid conduits are not part of the first closed-loop circuit;

and further comprising a refrigeration unit that is part of the first closed-loop circuit and that is arranged for alternative fluid flow with the thermal battery system within the first closed-loop circuit, whereby the refrigeration unit and the thermal battery system are alternatively utilized to cool the storage area via the storage area heat exchanger.

2. The apparatus of claim 1 , further comprising a second pump onboard the apparatus and arranged in fluid communication with the first plurality of fluid conduits and configured to create a fluid flow through the first plurality of fluid conduits between the storage area heat exchanger and the refrigeration unit, wherein the second pump is arranged within the first closed-loop circuit in series with the refrigeration unit.

Continuity (4)
Continuation 18736706 · Jun 7, 2024
Provisional Application 63542409 · Oct 4, 2023
Provisional Application 63536433 · Sep 3, 2023
Provisional Application 63471759 · Jun 7, 2023
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