会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明专利
    • Chemical heat storage device
    • 化学储热装置
    • JP2013113552A
    • 2013-06-10
    • JP2011262350
    • 2011-11-30
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所Denso Corp株式会社デンソー
    • WAKASUGI TOMOHISASHIMAZU TAKASHIKOMAKI KATSUYAKUWAYAMA KAZUTOSHIFUSE TAKUYANAKAGAWA TADAHIROSAEGUSA HIROSHI
    • F25B17/08
    • PROBLEM TO BE SOLVED: To improve an energy utilization rate by recovering sensible heat remaining in a reaction vessel in which the regeneration of a chemical heat storage material is completed.SOLUTION: The chemical heat storage device includes: a first heat exchange part 11 and first reaction vessels 12 (a plurality of reaction vessels) heated by a chemical reaction with a reaction material 16 and having a chemical heat storage material 18 from which the reaction material 16 is desorbed by heating; an evaporative condenser 14 storing the reaction material 16, and supplying the reaction material 16 to the reaction vessels while recovering the reaction material 16 desorbed from the chemical heat storage material 18; and the first heat exchange part 11 allowing heat exchange between the first heat exchange part 11 and the first reaction vessels 12 ( the plurality of reaction vessels).
    • 解决的问题:通过回收在化学蓄热材料的再生完成的反应容器中残存的显热来提高能量利用率。 解决方案:化学蓄热装置包括:通过与反应材料16的化学反应加热并具有化学蓄热材料18的第一热交换部分11和第一反应容器12(多个反应容器) 反应物料16通过加热解吸; 储存反应材料16的蒸发冷凝器14,并且在回收从化学蓄热材料18脱附的反应材料16的同时将反应材料16供给到反应容器中; 以及允许第一热交换部11和第一反应容器12(多个反应容器)之间进行热交换的第一热交换部11。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • Chemical heat pump
    • 化学热泵
    • JP2013113565A
    • 2013-06-10
    • JP2011262849
    • 2011-11-30
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所Denso Corp株式会社デンソー
    • WAKASUGI TOMOHISASHIMAZU TAKASHISAEGUSA HIROSHIKUWAYAMA KAZUTOSHIFUSE TAKUYANAKAGAWA TADAHIROKOMAKI KATSUYA
    • F25B17/08
    • Y02E60/142
    • PROBLEM TO BE SOLVED: To provide a chemical heat pump allowing the progress of a chemical reaction even if no supply of heat from the outside and reducing a loss of reaction heat generated by the chemical reaction.SOLUTION: The chemical heat pump 10 includes a reactor 12 storing a chemical reaction material, and including a heat recovery apparatus 26 recovering reaction heat generated by the chemical reaction of the chemical reaction material, and a regenerating heat source 16 for returning the chemical reaction material after the chemical reaction into its original state; a medium storage container 14 storing a reaction medium for reacting on the chemical reaction material; and a communicating pipe 20 connecting the medium storage container 14 to the heat recovery apparatus 26 through a medium transporting means 22 for transporting the reaction medium in the medium storage container 14 to the reactor 12, and a flow regulating means 24 for regulating the flow of the reaction medium transported from the medium storage container 14 to the reactor 12, and connecting the heat recovery apparatus 26 to the reactor 12 through an external heat exchanger 28 supplying heat recovered by the heat recovery apparatus 26, to the outside.
    • 要解决的问题:即使没有从外部供应热量并且减少由化学反应产生的反应热的损失,提供允许化学反应进行的化学热泵。 解决方案:化学热泵10包括存储化学反应材料的反应器12,并且包括回收由化学反应材料的化学反应产生的反应热的热回收装置26和再生热源16 化学反应物质化学反应进入其原始状态; 存储用于对化学反应材料发生反应的反应介质的介质储存容器14; 以及连通管20,其通过用于将介质储存容器14中的反应介质输送到反应器12的介质输送装置22将介质储存容器14连接到热回收装置26;以及流量调节装置24, 反应介质从介质储存容器14输送到反应器12,并且通过供给由热回收装置26回收的热量的外部热交换器28将热回收装置26连接到反应器12到外部。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Reactor for chemical heat storage
    • 化学储热反应器
    • JP2013113564A
    • 2013-06-10
    • JP2011262847
    • 2011-11-30
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所Denso Corp株式会社デンソー
    • WAKASUGI TOMOHISASHIMAZU TAKASHIKOMAKI KATSUYAKUWAYAMA KAZUTOSHIFUSE TAKUYANAKAGAWA TADAHIROSAEGUSA HIROSHI
    • F28D20/00
    • Y02E60/142
    • PROBLEM TO BE SOLVED: To improve heat conduction/cutoff performance between a heater layer and a heat storage layer during hydration reaction, and a heat transfer promotion function between the heater layer and the heat storage layer during dehydration reaction.SOLUTION: A reactor 100 for chemical heat storage includes: a heat storage layer 110 filled with a chemical heat storage material storing heat through dehydration reaction by heating and radiating heat through hydration reaction; a heater layer 150 converting electric energy into thermal energy and heating the heat storage layer 110 during the dehydration reaction; and a heat transmission partition wall 104 making a partition between the heater layer 150 and heat storage layer 110, having a smaller coefficient of linear expansion than that of the heater layer 150, having a gap formed with the heater layer 150 during the hydration reaction, and coming into contact by thermal expansion of the heater layer 150 during the dehydration reaction, and thereby transmitting the heat of the heater layer 150 to the heat storage layer 110.
    • 要解决的问题:提高水合反应期间加热器层和储热层之间的热传导/截止性能,以及脱水反应期间加热器层和储热层之间的传热促进功能。 解决方案:用于化学蓄热的反应器100包括:储热层110,填充有通过加热和通过水合反应辐射热而通过脱水反应储存热量的化学蓄热材料; 在脱水反应期间将电能转换为热能并加热蓄热层110的加热器层150; 以及在水合反应期间具有与加热层150形成的间隙的在加热器层150和蓄热层110之间形成隔板的传热分隔壁104,其具有比加热器层150更小的线性膨胀系数, 并且在脱水反应期间通过加热层150的热膨胀而接触,从而将加热器层150的热量传递到储热层110.版权所有(C)2013,JPO&INPIT
    • 5. 发明专利
    • 化学蓄熱装置
    • 化学储热装置
    • JP2014206363A
    • 2014-10-30
    • JP2013231652
    • 2013-11-08
    • 株式会社デンソーDenso Corp株式会社豊田中央研究所Toyota Central R&D Labs Inc
    • OKAMURA TORUIMAMURA TOMONORIKOMAKI KATSUYAFUSE TAKUYAKUWAYAMA KAZUTOSHIWAKASUGI TOMOHISASHIMAZU TAKASHIMOCHIZUKI MIYOMITSUI HIROYUKI
    • F28D20/00
    • Y02E60/142
    • 【課題】目標とする反応率を得るための時間を早くすることができ、COPの低下を抑制可能な化学蓄熱装置を提供する。【解決手段】化学蓄熱装置1は、流体状態の反応媒体20が器内に流入、器外に流出可能に構成され、反応媒体20と可逆的な熱化学反応を生じさせる反応物21と、器内外との間で熱を授受可能な熱交換部22とを備えた反応器2を有する。化学蓄熱装置1は、反応器2内に流入した反応媒体20と反応物21との反応により化合物を生成させる発熱反応の反応熱を反応器2外に放出する放熱モードと、反応器2外から供給された熱にて化合物を反応媒体20と反応物21とに分解する吸熱反応による反応媒体20を反応器2外に流出させる蓄熱モードとを動作可能である。化学蓄熱装置1は、放熱モードの発熱反応及び/又は蓄熱モードの吸熱反応の反応速度を制御するよう構成されている。【選択図】図2
    • 要解决的问题:提供一种能够缩短获得目标反应速度所需时间并抑制COP降解的化学蓄热装置。解决方案:化学蓄热装置1包括构造成能够流动的反应器2 反应器2中的流体状态的反应介质20,其包括反应物21,其与反应性介质20产生可逆的热化学反应,热交换器22向反应器2的外部转移和接收热量 化学蓄热装置1可以以放热模式工作,其中通过流入反应器2的反应介质20和反应物21之间的反应产生化合物的放热反应的热反应热到 反应器2或储热模式,其中通过用于将化合物分解成反应性介质的吸热反应使反应性介质20从反应器2流出 20和反应物21通过从反应器2的外部供应的热量。化学蓄热装置1被配置为控制放热模式中的放热反应和/或热量中的吸热反应的反应速度 存储模式。
    • 6. 发明专利
    • Chemical thermal storage air-conditioning system
    • 化学热储存空调系统
    • JP2014180980A
    • 2014-09-29
    • JP2013057969
    • 2013-03-21
    • Denso Corp株式会社デンソーToyota Central R&D Labs Inc株式会社豊田中央研究所
    • AKITA KENJIKOMAKI KATSUYAGOTO YOSUKEKUWAYAMA KAZUTOSHIWAKASUGI TOMOHISASHIMAZU TAKASHIMITSUI HIROYUKIMOCHIZUKI MIYO
    • B60H1/08C09K5/16F25B17/08F25B27/02F28D20/00
    • Y02A30/274Y02E60/142
    • PROBLEM TO BE SOLVED: To provide a chemical thermal storage air-conditioning system that enables indoor air-conditioning by an extremely simple configuration using a reactor having a built-in chemical thermal storage medium and evaporation/condensation means.SOLUTION: A chemical thermal storage air-conditioning system 1 comprises: a reactor 3 having a built-in chemical thermal storage medium 31; evaporation/condensation means 4 for evaporating water W used for hydration reaction of the chemical thermal storage medium 31 and condensing water W generated by dehydration reaction of the chemical thermal storage medium 31; and air-conditioning piping 2 through which air A coming into contact with at least one of the reactor 3 and the evaporation/condensation means 4 passes. In the chemical thermal storage air-conditioning system 1, the evaporation/condensation means 4 is made to function as an evaporator 41, and when water W evaporated by the evaporator 41 is supplied to the reactor 3, the air A passing through the air-conditioning piping 2 is heated or cooled by using at least one of heat generated during the hydration reaction of the chemical thermal storage medium 31 and heat deprived of by the evaporation/condensation means 4 during the hydration reaction, so as to perform air-conditioning.
    • 要解决的问题:提供一种化学热存储空调系统,其使用具有内置化学热存储介质和蒸发/冷凝装置的反应器,通过非常简单的配置实现室内空调。解决方案:化学热存储 空调系统1包括:具有内置化学蓄热介质31的反应器3; 用于蒸发水的蒸发/冷凝装置4,用于化学热存储介质31的水合反应和由化学热存储介质31的脱水反应产生的冷凝水W; 空气A与反应器3和蒸发/冷凝装置4中的至少一个接触的空调管路2通过。 在化学热存储空调系统1中,使蒸发/冷凝装置4用作蒸发器41,并且当通过蒸发器41蒸发的水W被供应到反应器3时,通过空气 - 通过在水合反应期间使用在化学蓄热介质31的水合反应期间产生的热量和被蒸发/冷凝装置4剥夺的热量中的至少一种来加热或冷却调节管道2,从而进行空气调节。
    • 7. 发明专利
    • Chemical heat accumulation system for vehicle and air conditioning system provided with the same
    • 用于车辆和空调系统的化学热量累积系统
    • JP2013112310A
    • 2013-06-10
    • JP2011262848
    • 2011-11-30
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所Denso Corp株式会社デンソー
    • WAKASUGI TOMOHISASHIMAZU TAKASHIKOMAKI KATSUYAKUWAYAMA KAZUTOSHIFUSE TAKUYANAKAGAWA TADAHIROSAEGUSA HIROSHI
    • B60H1/08B60H1/20F28D20/00
    • Y02E60/142
    • PROBLEM TO BE SOLVED: To provide a chemical heat accumulation system for vehicle which can be used as a heat source of an air conditioning system for vehicle and an air conditioning system for vehicle provided with the same.SOLUTION: A chemical heat accumulation system 60 for vehicle includes a reactor 62, a condenser 80, an evaporator 90, and a water tank 100. In a container 64 of the reactor 62, there is provided a reaction flow passage 64A in which a chemical thermal storage medium 66 is charged. Further, in the container 64 of the reactor 62, there is provided a refrigerant flow passage 64C. A heat emission line 72 is connected to the refrigerant flow passage 64C, and heat exchange is performed between engine cooling water flowing through the heat emission line 72 and the reactor 62. As a result, heat generated along with hydration reaction of the chemical thermal storage medium 66 is emitted into the engine cooling water, so that the engine cooling water is heated. The heated engine cooling water is supplied to a heater core 22, and the heater core 22 performs heat exchange with an air conditioning air flowing through an air conditioning case 32, so that air for air conditioning is heated.
    • 要解决的问题:提供一种可用作车辆空调系统的热源的车辆用化学蓄热系统和具备该车辆的车辆用空调系统。 解决方案:用于车辆的化学热积聚系统60包括反应器62,冷凝器80,蒸发器90和水箱100.在反应器62的容器64中,设置有反应流路64A, 化学热存储介质66被充电。 此外,在反应器62的容器64中设置有制冷剂流路64C。 发热管线72与制冷剂流路64C连接,并且在流过发热管线72的发动机冷却水和反应器62之间进行热交换。结果,与化学热存储器的水合反应一起产生的热量 介质66被排放到发动机冷却水中,使得发动机冷却水被加热。 加热的发动机冷却水被供给到加热器芯22,并且加热器芯22与流过空调壳体32的空调空气进行热交换,从而加热用于空调的空气。 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Chemical thermal storage air-conditioning system
    • 化学热储存空调系统
    • JP2014180981A
    • 2014-09-29
    • JP2013057970
    • 2013-03-21
    • Denso Corp株式会社デンソーToyota Central R&D Labs Inc株式会社豊田中央研究所
    • AKITA KENJIKUWAYAMA KAZUTOSHIKOMAKI KATSUYAGOTO YOSUKEWAKASUGI TOMOHISASHIMAZU TAKASHIMITSUI HIROYUKIMOCHIZUKI MIYO
    • B60H1/20B60H1/32F28D20/00
    • Y02E60/142
    • PROBLEM TO BE SOLVED: To provide a chemical thermal storage air-conditioning system that can effectively store sensible heat remaining in a reactor after dehydration reaction of a chemical thermal storage medium and can appropriately control a temperature of air during hydration reaction of the chemical thermal storage medium.SOLUTION: In a chemical thermal storage air-conditioning system 1, during dehydration reaction of a chemical thermal storage medium 21, water W is recovered to a heat exchange type water tank 4 via a condenser 32, and immediately after completion of the dehydration reaction of the chemical thermal storage medium 21 or during hydration reaction, heat generated by the dehydration reaction of the chemical thermal storage medium 21 is stored in the heat exchange type water tank 4 via a heat exchanger 25. In the chemical thermal storage air-conditioning system 1, during hydration reaction of the chemical thermal storage medium 21, when the water W recovered to the heat exchange type water tank 4 is supplied to a reactor 2 via an evaporator 31, heat stored in the heat exchange type water tank 4 is used as a heat source of the evaporator 31, and by using heat generated by the hydration reaction of the chemical thermal storage medium 21, a temperature of air A passing through air-conditioning piping 6 and coming into contact with the reactor 2 and the heat exchanger 25 is controlled.
    • 要解决的问题:提供一种化学热存储空调系统,其可以有效地存储化学热存储介质的脱水反应之后残留在反应器中的显热,并且可以适当地控制化学热存储器的水合反应期间的空气温度 介质:在化学热存储空调系统1中,在化学储热介质21的脱水反应期间,水W通过冷凝器32回收到热交换型水箱4中,并且在脱水完成后立即 化学热存储介质21的反应或水合反应期间,化学热存储介质21的脱水反应产生的热量经由热交换器25储存在热交换型水箱4中。在化学热存储空调 系统1在化学蓄热介质21的水合反应期间,当水W回收到热量时 交换型水箱4通过蒸发器31供给到反应器2,将存储在热交换型水箱4中的热量用作蒸发器31的热源,并且通过化学热的水合反应产生的热量 存储介质21,控制通过空调管路6并与反应器2和热交换器25接触的空气A的温度。
    • 10. 发明专利
    • Energy storing unit
    • 能源储存单位
    • JP2013115996A
    • 2013-06-10
    • JP2011262351
    • 2011-11-30
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所Denso Corp株式会社デンソー
    • WAKASUGI TOMOHISASHIMAZU TAKASHISAEGUSA HIROSHIKUWAYAMA KAZUTOSHIFUSE TAKUYANAKAGAWA TADAHIROKOMAKI KATSUYA
    • H02J15/00H01M10/48
    • Y02E60/12
    • PROBLEM TO BE SOLVED: To cope with a large amount of heat demand, and compatibly realize the miniaturization and cost reduction of a system.SOLUTION: There is provided an energy storing unit comprising: power generation means 12; a secondary battery 14 that is electrically connected to the power generation means 12 and storing electric power generated by the power generation means 12 as chemical energy, while the secondary battery 14 can convert the chemical energy to electric power and discharge the electric power; and a chemical heat storage device 16 including an electric heater electrically connected to the power generation means 12, the electric heater converting electric power to heat energy, and also including a chemical heat storage material that can be reversibly bonded to a reaction material. The heat storage device 16 is capable of storing heat by separating the chemical heat storage material and the reaction material by the heat energy, while capable of discharging the heat energy by reacting the chemical heat storage material and the reaction material.
    • 要解决的问题:为了应对大量的热需求,兼容地实现了系统的小型化和降低成本。 解决方案:提供一种能量存储单元,包括:发电装置12; 与发电装置12电连接并蓄积由发电装置12产生的电力作为化学能的二次电池14,二次电池14可以将化学能转换成电力并放电; 以及具有与发电装置12电连接的电加热器,电加热器将电力转换成热能的化学蓄热装置16,还包括能够可逆地结合到反应材料上的化学蓄热材料。 蓄热装置16能够通过利用热能分离化学蓄热材料和反应材料来储存热量,同时能够通过使化学蓄热材料和反应材料反应来排出热能。 版权所有(C)2013,JPO&INPIT