BATTERY COOLING SYSTEM
To provide a battery cooling system capable of suppressing variation of a temperature of a plurality of batteries.SOLUTION: A battery cooling system 10 comprises: a battery cooling channel 20; a first inlet and outlet part 23 and a second inlet and outlet part 24 of the battery cooling channel 20; a...
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Format | Patent |
Language | English Japanese |
Published |
29.09.2023
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Abstract | To provide a battery cooling system capable of suppressing variation of a temperature of a plurality of batteries.SOLUTION: A battery cooling system 10 comprises: a battery cooling channel 20; a first inlet and outlet part 23 and a second inlet and outlet part 24 of the battery cooling channel 20; a flow side three-way valve 50 having an input part 51, a first output part 52, and a second output part 53; an outflow side three-way valve 60 that includes a first inlet part 61, a second inlet part 62, and an outlet part 63; a first power supply passage 41 that connects a first outlet part 52 of a flow side three-way valve 50 and the first inlet and outlet part 23; a second supply flow passage 42 that connects a second outlet part 53 of the flow side three-way valve 50 with the second inlet and outlet part 24; a first exhaust passage 45 that connects a first inlet part 61 of the outflow side three-way valve 60 and the second inlet and outlet part 24; and a second exhaust passage 46 that connects the second inlet part 62 of the outflow side three-way valve 60 and the first inlet and outlet part 23.SELECTED DRAWING: Figure 1
【課題】複数のバッテリの温度のばらつきを抑制可能なバッテリ冷却システムを提供する。【解決手段】バッテリ冷却システム10は、バッテリ冷却流路20と、バッテリ冷却流路20の第1入出部23及び第2入出部24と、入口部51、第1出口部52、及び第2出口部53を有する流入側三方弁50と、第1入口部61、第2入口部62、及び出口部63を有する流出側三方弁60と、流入側三方弁50の第1出口部52と第1入出部23とを接続する第1供給流路41と、流入側三方弁50の第2出口部53と第2入出部24とを接続する第2供給流路42と、流出側三方弁60の第1入口部61と第2入出部24とを接続する第1排出経路45と、流出側三方弁60の第2入口部62と第1入出部23とを接続する第2排出経路46と、を備える。【選択図】図1 |
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AbstractList | To provide a battery cooling system capable of suppressing variation of a temperature of a plurality of batteries.SOLUTION: A battery cooling system 10 comprises: a battery cooling channel 20; a first inlet and outlet part 23 and a second inlet and outlet part 24 of the battery cooling channel 20; a flow side three-way valve 50 having an input part 51, a first output part 52, and a second output part 53; an outflow side three-way valve 60 that includes a first inlet part 61, a second inlet part 62, and an outlet part 63; a first power supply passage 41 that connects a first outlet part 52 of a flow side three-way valve 50 and the first inlet and outlet part 23; a second supply flow passage 42 that connects a second outlet part 53 of the flow side three-way valve 50 with the second inlet and outlet part 24; a first exhaust passage 45 that connects a first inlet part 61 of the outflow side three-way valve 60 and the second inlet and outlet part 24; and a second exhaust passage 46 that connects the second inlet part 62 of the outflow side three-way valve 60 and the first inlet and outlet part 23.SELECTED DRAWING: Figure 1
【課題】複数のバッテリの温度のばらつきを抑制可能なバッテリ冷却システムを提供する。【解決手段】バッテリ冷却システム10は、バッテリ冷却流路20と、バッテリ冷却流路20の第1入出部23及び第2入出部24と、入口部51、第1出口部52、及び第2出口部53を有する流入側三方弁50と、第1入口部61、第2入口部62、及び出口部63を有する流出側三方弁60と、流入側三方弁50の第1出口部52と第1入出部23とを接続する第1供給流路41と、流入側三方弁50の第2出口部53と第2入出部24とを接続する第2供給流路42と、流出側三方弁60の第1入口部61と第2入出部24とを接続する第1排出経路45と、流出側三方弁60の第2入口部62と第1入出部23とを接続する第2排出経路46と、を備える。【選択図】図1 |
Author | MORII SOICHI MANO YUSUKE TAKETOMI HARUMI YASUE TAKAHIRO |
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Snippet | To provide a battery cooling system capable of suppressing variation of a temperature of a plurality of batteries.SOLUTION: A battery cooling system 10... |
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SubjectTerms | BASIC ELECTRIC ELEMENTS ELECTRICITY PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY |
Title | BATTERY COOLING SYSTEM |
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