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    • 52. 发明专利
    • Absorption heat pump equipment
    • JP5390426B2
    • 2014-01-15
    • JP2010024646
    • 2010-02-05
    • 日立アプライアンス株式会社東京瓦斯株式会社
    • 伸之 武田修一郎 内田章 西口武 横山清幸 森教之 西山
    • F25B15/00
    • Y02A30/277Y02B30/62
    • PROBLEM TO BE SOLVED: To obtain an absorption type heat pump device capable of simultaneously supplying cold water and hot water and having a high COP. SOLUTION: The absorption type heat pump device includes an evaporator 4, an absorber 5, a condenser 3, a low-temperature regenerator 2, a high-temperature regenerator 1, solution heat exchangers 61, 62, a solution pump 51 and a refrigerant pump 41. The absorption type heat pump device further includes: cold water piping 71 connecting the evaporator 4 with a cold water load 7 and supplying cold water cooled by the evaporator 4 to the cold water load 7; and hot water piping 81 connecting the absorber 5 and the condenser 3 with a hot water load 8 and supplying hot water of which temperature is raised by cooling the absorber 5 and the condenser 3 to the hot water load 8. Each of the evaporator 4 and the absorber 5 is formed to have multiple stages on a low stage side with low pressure and a high stage side with high pressure. Hot water from the hot water load 8 is made to flow from the high stage side absorber 5b to the low stage side absorber 5a with low pressure, sequentially. Concentrated solution from the high-temperature regenerator 1 and the low-temperature regenerator 2 is made to flow from the low stage side absorber 5a to the high stage side absorber 5b. COPYRIGHT: (C)2011,JPO&INPIT
    • 55. 发明专利
    • Air-cooled type adsorption heat pump
    • 空气冷却型吸附式热泵
    • JP2013217578A
    • 2013-10-24
    • JP2012088681
    • 2012-04-09
    • Union Sangyo Kkユニオン産業株式会社Mitsubishi Plastics Inc三菱樹脂株式会社
    • SAWAI SHINGOKUBOKAWA SEIICHI
    • F25B17/08F28D5/00
    • Y02A30/277Y02A30/278Y02B30/62Y02B30/64
    • PROBLEM TO BE SOLVED: To simplify and miniaturize an adsorption heat pump system, to reduce its equipment costs, and to enlarge its application range.SOLUTION: An adsorption heat pump is an air-cooled type adsorption heat pump including an evaporator 48, adsorbers/desorbers 49, 50, and a condenser 51, and the adsorbers/desorbers 49, 50 include orthogonal heat exchangers 38 of a structure to exchange heat between a flow channel of a fluid A and a flow channel of a fluid B. The flow channel of the fluid A holds an adsorbent and is constituted to allow steam as an adsorbate to flow therein, and the flow channel of the fluid B is constituted to allow the air as a working fluid to flow therein. The steam is repeatedly adsorbed and desorbed by the orthogonal heat exchangers 38, and cold heat obtained in the evaporator 48 is output as cold air by circulating the water between the evaporator 48 and the condenser 51.
    • 要解决的问题:为了简化和小型化吸附式热泵系统,降低其设备成本,并扩大其应用范围。解决方案:吸附式热泵是一种风冷式吸附式热泵,其包括蒸发器48,吸附器/ 脱离器49,50和冷凝器51,并且吸附器/解吸器49,50包括在流体A的流动通道和流体B的流动通道之间进行热交换的结构的正交热交换器38。 流体A保持吸附剂并且被构造成允许作为被吸附物的蒸汽流入其中,并且流体B的流动通道被构造成允许作为工作流体的空气在其中流动。 蒸汽被正交热交换器38重复地吸附和解吸,并且通过在蒸发器48和冷凝器51之间循环来将在蒸发器48中获得的冷热输出为冷空气。
    • 56. 发明专利
    • Heat exchanger with integrated pump
    • 热交换器与集成泵
    • JP2013178065A
    • 2013-09-09
    • JP2012043243
    • 2012-02-29
    • Aisin Seiki Co Ltdアイシン精機株式会社
    • TSUBOUCHI OSAMU
    • F28D11/02F25B15/00F28D7/10
    • Y02A30/277Y02B30/62
    • PROBLEM TO BE SOLVED: To provide a heat exchanger with an integrated pump, capable of allowing a pump pressure to uniformly or substantially uniformly act on the whole fluid flow path.SOLUTION: A pump section 2 is disposed inside of a flow path 10, a center A of the flow path 10 and a rotating center of the pump section 2 are separated from each other, and stirring blade sections 40 are energized outward in the radial direction. The flow path 10 is partitioned into a plurality of small chambers 16 by the stirring blades 40 and the like. The stirring blades 40 are repeatedly moved in and out, and pressures in the small chambers 16 are fluctuated in accompany therewith, thus pumping action is generated. The stirring blade 40 is passed above a heat exchange wall 11 of the flow path 10, and is brought into slide contact with a peripheral wall 93 of the pump section 2, and thereby formation of a liquid reservoir 17 is suppressed.
    • 要解决的问题:提供具有集成泵的热交换器,其能够使泵压力均匀地或基本上均匀地作用在整个流体流动路径上。解决方案:泵部分2设置在流路10的内部, 流路10的中心A和泵部2的旋转中心彼此分离,搅拌叶片部40向径向外侧被赋能。 流路10由搅拌叶片40等分隔成多个小室16。 搅拌叶片40反复移动进出,小室16内的压力伴随着波动,从而产生泵送动作。 搅拌叶片40通过流路10的热交换壁11的上方,与泵部2的周壁93滑动接触,从而抑制液体储存器17的形成。
    • 57. 发明专利
    • Absorption chiller heater system
    • 吸收式加热器系统
    • JP2013164224A
    • 2013-08-22
    • JP2012028142
    • 2012-02-13
    • Yazaki Energy System Corp矢崎エナジーシステム株式会社
    • KOKAYU MASATOKUROKAWA HIDEAKIINAGAKI MOTOMISUGIYAMA TAKAHIDEYAMAUCHI AKIRANAKANOSE MASAYA
    • F25B15/00F24F11/02
    • Y02A30/277Y02B30/62
    • PROBLEM TO BE SOLVED: To provide an absorption chiller heater system that can prevent amenity from deteriorating when a load factor rises while more preferentially driving a priority machine using exhaust heat or the like.SOLUTION: An absorption chiller heater system 1 includes a priority machine 2, a direct firing machine 3, a load factor operation part 6a for operating a load factor of an indoor unit 5 based on information thereof, and a temperature control part 6b for setting a preset temperature of the priority machine 2 to be equal to or less than a preset temperature of the direct firing machine 3 in a cooling operation, and reducing a difference of the preset temperatures of the priority machine 2 and the direct firing machine 3 as the load factor operated by the load factor operation part 6a rises. Moreover, the load factor operation part 6a and the temperature control part 6b are provided on a remote control panel 6 that can at least switch operations of cooling and heating.
    • 要解决的问题:提供一种吸收式冷却器加热器系统,其能够在更优先利用排气热等优先驱动优先机器的情况下使负载系数上升而防止便于恶化。解决方案:吸收式制冷机加热器系统1包括优先机器2 ,直接点火机3,基于其信息操作室内机5的负载系数的负载系数运算部6a,以及将优先机2的预设温度设定为等于或等于的温度控制部6b 超过直接点火机3的预设温度,并且由于负载因子运算部6a操作的负载系数上升,能够降低优先机器2和直接点火机3的预置温度的差。 此外,负载率操作部6a和温度控制部6b设置在可以至少切换冷却和加热的操作的遥控面板6上。
    • 58. 发明专利
    • Absorption chiller
    • JP5261111B2
    • 2013-08-14
    • JP2008250818
    • 2008-09-29
    • 三洋電機株式会社
    • 秀樹 府内春樹 西本俊之 星野数恭 伊良皆
    • F25B15/00
    • Y02A30/277Y02B30/62
    • PURPOSE: An absorption refrigerator is provided to improve efficiency and to simplify the design of a heating source fluid pipe. CONSTITUTION: An absorption refrigerator comprises a high temperature regenerator(1), a low temperature regenerator(3), a condenser(4), an evaporator(6), and an absorber(7). A thin absorbent liquid pipe is branched into a first thin absorption liquid pipe and a second thin absorption liquid pipe which are connected to the high temperature regenerator. The heat collecting device is installed in the first thin absorption liquid pipe. The heat collecting device exchanges heat with the heating source fluid flowing in the high temperature regenerator. The second thin absorption liquid pipe comprises a high-temperature heat exchanger(10) and a low-temperature heat exchanger(9). The high-temperature heat exchanger exchanges heat with the intermediate absorption liquid generated from the high-temperature regenerator. The low-temperature heat exchanger exchanges heat with the thick absorbent liquid generated in the low temperature regenerator.
    • 59. 发明专利
    • Absorption chiller
    • JP5260895B2
    • 2013-08-14
    • JP2007161553
    • 2007-06-19
    • 大阪瓦斯株式会社
    • 洋 藤本努 若林
    • F25B15/00F25B41/00
    • Y02A30/277Y02B30/62
    • PROBLEM TO BE SOLVED: To provide an absorption type refrigerating machine capable of improving energy efficiency without degrading an absorbing capacity of absorbing liquid by preventing supercooling of the absorbing liquid in an absorber, and preventing lowering of coefficient of performance (COP value). SOLUTION: In this absorption type refrigerating machine comprising an evaporator 1, the absorber 2, a regenerator 3 and a condenser 4, further comprising an absorbing liquid circulation passage 7 for circulating the absorbing liquid D between the absorber 2 and the regenerator 3, and operated by producing a dilute absorbing liquid D1 by absorbing a refrigerant in the absorber 2, and producing a dense absorbing liquid D2 by evaporating the refrigerant in the regenerator 3, a heat exchanger 5 for the absorber, cooling the dense absorbing liquid D2 circulated from the regenerator 3 to the absorber 2 by heat exchange with a cooling medium C introduced from the external, is disposed in the absorbing liquid circulation passage 7 outside of the absorber 2. COPYRIGHT: (C)2009,JPO&INPIT