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    • 6. 发明授权
    • Heat exchange having adsorbing core for use in refrigerating system
    • 具有用于制冷系统的吸附芯的热交换器
    • US07810352B2
    • 2010-10-12
    • US11544355
    • 2006-10-09
    • Hiroshi MiedaSeiji InoueSatoshi Inoue
    • Hiroshi MiedaSeiji InoueSatoshi Inoue
    • F25B15/00
    • F25B35/04F28F13/003F28F13/185Y02A30/277Y02A30/278Y02B30/62Y02B30/64Y10T117/1068
    • A heat exchanger having an adsorbing core is advantageously applied to a refrigerating system mounted on an automotive vehicle. The adsorbing core absorbs heat from coolant and gives heat to the coolant thereby to perform heat-exchanging operation. The adsorbing core is composed of a heat exchanging member such as tubes or fins of the heat exchanger and a attracting layer connected to the surface of the heat exchanging member. A seed crystal retaining layer is firmly connected to the surface of the heat exchanging member, and the attractant crystals forming the attractant layer are grown on the seed crystals by a hydrothermal crystal growth method. Since the attracting layer is uniformly formed and firmly connected to the surface of the heat exchanging member, heat is quickly transferred between the attractant layer and the heat exchanging member.
    • 具有吸附芯的热交换器有利地应用于安装在机动车上的制冷系统。 吸附芯从冷却剂吸收热量并向冷却剂供热,从而进行热交换操作。 吸附芯由热交换器的管或翅片等热交换构件和与热交换构件的表面连接的吸附层构成。 晶种保持层牢固地连接到热交换构件的表面,并且通过水热晶体生长法在晶种上生长形成引诱层的引诱剂晶体。 由于吸引层均匀地形成并牢固地连接到热交换构件的表面,所以在引诱层和热交换构件之间快速地传递热量。
    • 7. 发明授权
    • Chemical heat accumulator
    • 化学蓄热器
    • US09347711B2
    • 2016-05-24
    • US13065232
    • 2011-03-17
    • Hiroshi Mieda
    • Hiroshi Mieda
    • F28D15/00F28D7/02F28D20/00
    • F28D7/022F28D20/003Y02E60/142Y02E70/30
    • A chemical heat accumulator includes first- to Mth-stage heat storage units and a condensing part. Each heat storage unit includes a reaction vessel housing first reactant, a container housing second reactant, and a connection passage connecting the reaction vessel and the container for guiding the second reactant from the container to the reaction vessel. The connection passage is provided with an opening/closing member for opening and closing the connection passage. The reaction vessel of the Mth-stage heat storage unit is thermally connected with an object to be heated. The reaction vessel of a (N−1)th-stage heat storage unit is thermally connected with the container of an Nth-stage heat storage unit. M is an integer equal to or greater than 2, and N is an integer equal to or greater than 2 and equal to or less than M.
    • 化学蓄热器包括第一级至第M级储热单元和冷凝部件。 每个蓄热单元包括容纳第一反应物的反应容器,容纳第二反应物的容器和连接反应容器和容器的连接通道,用于将第二反应物从容器引导至反应容器。 连接通道设置有用于打开和关闭连接通道的打开/关闭部件。 第M级蓄热部的反应容器与被加热物热连接。 (N-1)级储热单元的反应容器与第N级蓄热单元的容器热连接。 M是等于或大于2的整数,N是等于或大于2并等于或小于M的整数。
    • 10. 发明申请
    • Chemical heat accumulator
    • 化学蓄热器
    • US20110226447A1
    • 2011-09-22
    • US13065232
    • 2011-03-17
    • Hiroshi Mieda
    • Hiroshi Mieda
    • C09K5/16
    • F28D7/022F28D20/003Y02E60/142Y02E70/30
    • A chemical heat accumulator includes first- to Mth-stage heat storage units and a condensing part. Each heat storage unit includes a reaction vessel housing first reactant, a container housing second reactant, and a connection passage connecting the reaction vessel and the container for guiding the second reactant from the container to the reaction vessel. The connection passage is provided with an opening/closing member for opening and closing the connection passage. The reaction vessel of the Mth-stage heat storage unit is thermally connected with an object to be heated. The reaction vessel of a (N−1)th-stage heat storage unit is thermally connected with the container of an Nth-stage heat storage unit. M is an integer equal to or greater than 2, and N is an integer equal to or greater than 2 and equal to or less than M.
    • 化学蓄热器包括第一级至第M级储热单元和冷凝部件。 每个蓄热单元包括容纳第一反应物的反应容器,容纳第二反应物的容器和连接反应容器和容器的连接通道,用于将第二反应物从容器引导至反应容器。 连接通道设置有用于打开和关闭连接通道的打开/关闭部件。 第M级蓄热部的反应容器与被加热物热连接。 (N-1)级储热单元的反应容器与第N级蓄热单元的容器热连接。 M是等于或大于2的整数,N是等于或大于2并等于或小于M的整数。