IP Library Granted Patent US 12,055,348
Granted Patent B2
US 12,055,348 · App. 17/428,281 · Granted Aug 6, 2024

Heat exchange apparatus and method of manufacturing the same

Inventors: Junichi Nakazono (Tokyo, JP); Shunkei Suzuki (Tokyo, JP); Yasumitsu Nomura (Tokyo, JP); Yoshikazu Yaji (Tokyo, JP); Minoru Sato (Tokyo, JP); Seiji Maruyama (Tokyo, JP); Yuichi Usuda (Tokyo, JP); Norihiro Yoneda (Tokyo, JP)
Assignee: MITSUBISHI ELECTRIC CORPORATION
F28D20/021F28D2020/0069F28D2020/0078F28D2020/0082
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Quick Facts
Patent No.
US 12,055,348
App. No.
17/428,281
Granted
Aug 6, 2024
Kind
B2
Abstract

Provided herein are a heat exchange apparatus intended to achieve compatibility between installation flexibility and durability and a method of manufacturing the heat exchange apparatus. The heat exchange apparatus is a heat exchange apparatus that exchanges heat between a heat storage material and a fluid. The heat exchange apparatus includes a first heat storage module and a second heat storage module, each having the heat storage material and a box-like shape, and a housing containing the first heat storage module and the second heat storage module. The first heat storage module is disposed in the same orientation as that of the second heat storage module.

Claims (23)

1. A heat exchange apparatus that exchanges heat between a latent heat storage material and a fluid, the heat exchange apparatus comprising:

a first heat storage module and a second heat storage module each having the latent heat storage material and a box shape; and

a housing containing the first heat storage module and the second heat storage module each having the box shape,

wherein the first heat storage module and the second heat storage module each having the latent heat storage material are disposed so as to be oriented in the same direction and be stacked vertically,

wherein the first heat storage module includes a first inlet that guides the fluid, which is guided from outside of the housing into the housing, into the first heat storage module,

wherein the second heat storage module includes a second inlet that guides the fluid, which is guided from outside of the housing into the housing, into the second heat storage module,

wherein the first inlet and the second inlet are arranged in a same side of an aggregate including the first and second heat storage modules arranged in the same orientation and are connected to an inlet pipe extending vertically,

wherein the first heat storage module includes a first outlet that guides the fluid guided into the first heat storage module to outside of the first heat storage module,

wherein the second heat storage module includes a second outlet that guides the fluid guided into the second heat storage module to outside of the second heat storage module, and

wherein the first outlet and the second outlet are arranged in the same side of the aggregate and are connected to an outlet pipe extending vertically, the inlet pipe and the outlet pipe being arranged adjacent to the same side of the aggregate.

2. The heat exchange apparatus of claim 1 , further comprising:

a housing inlet that guides the fluid from outside of the housing into the housing, wherein the housing inlet is connected to the first inlet and the second inlet.

3. The heat exchange apparatus of claim 1 , further comprising:

a housing outlet that guides the fluid guided into the housing to outside of the housing,

wherein the housing outlet is connected to the first outlet and the second outlet.

4. The heat exchange apparatus of claim 1 , further comprising:

a control board configured to switch between a high-temperature fluid having a higher temperature than the latent heat storage material and a low-temperature fluid having a lower temperature than the latent heat storage material, the high-temperature fluid or the low-temperature fluid serving as the fluid exchanging heat with the latent heat storage material.

5. The heat exchange apparatus of claim 1 , wherein the latent heat storage material is isolated from the fluid.

6. A method of manufacturing a heat exchange apparatus that exchanges heat between a latent heat storage material and a fluid, the method comprising:

a module preparing step of preparing a first heat storage module and a second heat storage module each having the latent heat storage material and a box shape;

a housing preparing step of preparing a housing to contain the first heat storage module and the second heat storage module each having the box shape; and

an arranging step of arranging the prepared first and second heat storage modules each having the latent heat storage material vertically in a same orientation in the housing,

wherein an inlet for each of the prepared first and second heat storage modules and an outlet for each of the prepared first and second heat storage modules are arranged in a same side of the aggregate including the first and second heat storage modules arranged in the same orientation, wherein an inlet pipe connected to each inlet extends vertically and an outlet pipe connected to each outlet extends vertically, wherein the inlet pipe and the outlet pipe are arranged adjacent to the same side of the aggregate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2021
From: NAKAZONO, JUNICHI; SUZUKI, SHUNKEI; NOMURA, YASUMITSU; YAJI, YOSHIKAZU; SATO, MINORU; MARUYAMA, SEIJI; USUDA, YUICHI; YONEDA, NORIHIRO
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 057079/0916 →
Continuity (1)
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