Vehicle air conditioning system and vehicle air conditioning method

US12459336B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12459336-B2
Application numberUS-202118034772-A
CountryUS
Kind codeB2
Filing dateNov 10, 2021
Priority dateNov 16, 2020
Publication dateNov 4, 2025
Grant dateNov 4, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A vehicle air conditioning system includes a refrigerant circuit that circulates a refrigerant through a compressor, a heat-absorbing heat exchanger, a decompression unit, and a heat-dissipating heat exchanger, a heat medium circuit including a high-temperature heat medium circuit that circulates a high-temperature heat medium and a low-temperature heat medium circuit that circulates a low-temperature heat medium, a vehicle interior heat exchanger that exchanges heat between air and at least one of the high-temperature heat medium and the low-temperature heat medium, a vehicle exterior heat exchanger that exchanges heat between air and at least one of the high-temperature heat medium and the low-temperature heat medium, and a switching unit that switches respective flows of the high-temperature heat medium and the low-temperature heat medium in accordance with an operation mode of the vehicle air conditioning system.

First claim

Opening claim text (preview).

The invention claimed is: 1 . A vehicle air conditioning system comprising: a refrigerant circuit configured to circulate a refrigerant through a compressor, a heat-absorbing heat exchanger, an expansion valve, and a heat-dissipating heat exchanger in accordance with a refrigeration cycle; a heat medium circuit including a high-temperature heat medium circuit configured to circulate a high-temperature heat medium that absorbs heat from the refrigerant in the heat-absorbing heat exchanger and a low-temperature heat medium circuit configured to circulate a low-temperature heat medium that dissipates heat to the refrigerant in the heat-dissipating heat exchanger; a vehicle interior heat exchanger configured to exchange heat between air and at least one of the high-temperature heat medium and the low-temperature heat medium; a vehicle exterior heat exchanger configured to exchange heat between air and at least one of the high-temperature heat medium and the low-temperature heat medium; and switching valves configured to switch respective flows of the high-temperature heat medium and the low-temperature heat medium in accordance with an operation mode of the vehicle air conditioning system, wherein the heat medium circuit supplies the high-temperature heat medium to at least one of the vehicle interior heat exchanger and the vehicle exterior heat exchanger and supplies the low-temperature heat medium to at least one of the vehicle interior heat exchanger and the vehicle exterior heat exchanger, in accordance with the operation mode, at least one of the vehicle interior heat exchanger and the vehicle exterior heat exchanger includes a first heat exchanger and a second heat exchanger, the first heat exchanger and the second heat exchanger being connectable in series or in parallel in the heat medium circuit, the switching valves switch a flow of the high-temperature heat medium on an upstream side and a downstream side of the heat-absorbing heat exchanger, switches a flow of the low-temperature heat medium on an upstream side and a downstream side of the heat-dissipating heat exchanger, and switches a connection of the first heat exchanger and the second heat exchanger between series connection and parallel connection, the vehicle exterior heat exchanger includes: a first exterior heat exchanger as the first heat exchanger; and a second exterior heat exchanger as the second heat exchanger, the operation mode includes at least one of: a heating mode in which the low-temperature heat medium is sequentially supplied to the first exterior heat exchanger and the second exterior heat exchanger in a state where the first exterior heat exchanger and the second exterior heat exchanger are connected in series, and the high-temperature heat medium is supplied to the vehicle interior heat exchanger, and a cooling mode in which the high-temperature heat medium is sequentially supplied to the first exterior heat exchanger and the second exterior heat exchanger in a state where the first exterior heat exchanger and the second exterior heat exchanger are connected in series, and the low-temperature heat medium is supplied to the vehicle interior heat exchanger, and the operation mode includes: a continuous heating mode of sequentially performing, in a state where the first exterior heat exchanger and the second exterior heat exchanger are connected in parallel, a first heating step of supplying the low-temperature heat medium to the first exterior heat exchanger, supplying the high-temperature heat medium to the second exterior heat exchanger, and supplying the high-temperature heat medium to the vehicle interior heat exchanger, and a second heating step of supplying the low-temperature heat medium to the second exterior heat exchanger, supplying the high-temperature heat medium to the first exterior heat exchanger, and supplying the high-temperature heat medium to the vehicle interior heat exchanger. 2 . The vehicle air conditioning system according to claim 1 , wherein the vehicle interior heat exchanger includes a first interior heat exchanger as the first heat exchanger, and a second interior heat exchanger as the second heat exchanger, and the operation mode includes at least one of a cooling mode in which the low-temperature heat medium is sequentially supplied to the first interior heat exchanger and the second interior heat exchanger in a state where the first interior heat exchanger and the second interior heat exchanger are connected in series, and the high-temperature heat medium is supplied to the vehicle exterior heat exchanger, and a heating mode in which the high-temperature heat medium is sequentially supplied to the first interior heat exchanger and the second interior heat exchanger in a state where the first interior heat exchanger and the second interior heat exchanger are connected in series, and the low-temperature heat medium is supplied to the vehicle exterior heat exchanger. 3 . The vehicle air conditioning system according to claim 2 , further comprising: an air blower; an air guide path through which air sent by the air blower flows; the first interior heat exchanger located in the air guide path; and the second interior heat exchanger which is located in the air guide path and into which at least part of air having passed through the first interior heat exchanger is introduced. 4 . The vehicle air conditioning system according to claim 3 , wherein the operation mode includes a dehumidification heating mode in which the low-temperature heat medium is supplied to the first interior heat exchanger and the high-temperature heat medium is supplied to the second interior heat exchanger in a state where the first interior heat exchanger and the second interior heat exchanger are connected in parallel. 5 . The vehicle air conditioning system according to claim 2 , wherein the operation mode includes a freeze cleaning mode of sequentially performing a first step of supplying the low-temperature heat medium to one of the first interior heat exchanger and the second interior heat exchanger such that frost is formed on the one of the first interior heat exchanger and the second interior heat exchanger, a second step of supplying the low-temperature heat medium to another of the first interior heat exchanger and the second interior heat exchanger such that frost is formed on the other while supplying the high-temperature heat medium to the one of the first interior heat exchanger and the second interior heat exchanger, and a third step of supplying the high-temperature heat medium to the other of the first interior heat exchanger and the second interior heat exchanger, and the second step and the third step are performed in a state where the first interior heat exchanger and the second interior heat exchanger are connected in parallel. 6 . The vehicle air conditioning system according to claim 1 , wherein the switching valves include a three-way valve located between the first heat exchanger and the second heat exchanger. 7 . The vehicle air conditioning system according to claim 1 , wherein the first heat exchanger and the second heat exchanger are arranged in series with respect to airflow. 8 . A vehicle air conditioning method using a vehicle air conditioning system including a refrigerant circuit configured to circulate a refrigerant in accordance with a refrigeration cycle, a heat medium circuit including a high-temperature heat medium circuit configured to circulate a high-temperature heat medium that absorbs heat from the refrigerant in a heat-absorbing heat exchanger in the refrigerant circuit and a low-temperature heat medium circuit configured to circulate a low-temperature heat medium that dissipates

Assignees

Inventors

Classifications

  • Control means therefor · CPC title

  • Controlling the flow of heating or cooling liquid, e.g. valves or pumps (B60H1/00899 takes precedence; constructions of valves B60H1/00485) · CPC title

  • for minimizing the humidity of the air · CPC title

  • comprising means for defrosting outside heat exchangers · CPC title

  • Controlling the flow of liquid in a heat pump system (controlling the properties of the refrigerant liquid, e.g. pressure or temperature, B60H1/3204) · CPC title

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What does patent US12459336B2 cover?
A vehicle air conditioning system includes a refrigerant circuit that circulates a refrigerant through a compressor, a heat-absorbing heat exchanger, a decompression unit, and a heat-dissipating heat exchanger, a heat medium circuit including a high-temperature heat medium circuit that circulates a high-temperature heat medium and a low-temperature heat medium circuit that circulates a low-temp…
Who is the assignee on this patent?
Mitsubishi Heavy Ind Thermal Systems Ltd, Systems Ltd
What technology area does this patent fall under?
Primary CPC classification B60H1/32281. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Nov 04 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 6 related publications on this page (citations in our corpus or others sharing the same primary CPC).