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    • 1. 发明专利
    • Control method for adsorption type heat pump, information processing system, and control device
    • 吸附式热泵的控制方法,信息处理系统及控制装置
    • JP2013044486A
    • 2013-03-04
    • JP2011183459
    • 2011-08-25
    • Fujitsu Ltd富士通株式会社
    • ASO NORIYASUMANABE TOSHIO
    • F25B27/02
    • Y02A30/274Y02A30/278Y02B30/64
    • PROBLEM TO BE SOLVED: To provide a control method for adsorption type heat pump, an information processing system, and a control device that can place an adsorption type heat pump in efficient operation even if a heat source which supplies heat to be used to recycle an adsorbent has large change in temperature.SOLUTION: Heat media discharged from a plurality of electronic apparatuses 41a, 41b, and 41c are put together and supplied to the adsorption type heat pump 10. A control part 30 virtualizes the plurality of electronic apparatuses 41a, 41b, and 41c and determines the electronic apparatuses 41a, 41b to be put in operation and the electronic apparatus 41c to be stopped. Further, the control part 30 individually adjusts flow rates of heat media supplied to the plurality of electronic apparatuses 41a, 41b, and 41c so that the heat media discharged from the plurality of electronic apparatuses 41a, 41b, and 41c may have the same temperature.
    • 要解决的问题:为了提供一种吸附式热泵的控制方法,信息处理系统和控制装置,即使提供热量的热源也可以使吸附型热泵在有效运行中 再循环吸附剂具有很大的温度变化。 解决方案:将从多个电子设备41a,41b和41c排出的热介质放在一起并提供给吸附式热泵10.控制部分30虚拟化多个电子设备41a,41b和41c, 确定要投入运行的电子设备41a,41b和电子设备41c停止。 此外,控制部30分别调节供给到多个电子设备41a,41b,41c的热介质的流量,使得从多个电子设备41a,41b,41c排出的热介质可以具有相同的温度。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • Adsorption type heat pump and information processing system
    • 吸附式热泵和信息处理系统
    • JP2013019616A
    • 2013-01-31
    • JP2011154117
    • 2011-07-12
    • Fujitsu Ltd富士通株式会社
    • YOSHIDA HIROAKIASO NORIYASUMANABE TOSHIO
    • F25B17/08
    • Y02A30/278Y02B30/64
    • PROBLEM TO BE SOLVED: To improve performance by achieving a stable opening/closing operation of a valve in an adsorption type heat pump using a differential pressure drive type valve.SOLUTION: The adsorption type heat pump 30 includes adsorbers 1, 2 adsorbing and desorbing a refrigerant 21, an evaporator 3 evaporating the refrigerant, a condenser 4 condensing the refrigerant, a first flow path 5 provided between the adsorber and the evaporator to allow a gas-phase refrigerant 21X to flow therein, a second flow path 6 provided between the adsorber and the condenser to allow the gas-phase refrigerant to flow therein, a first valve 10 provided in the first flow path to open and close the first flow path, and a second valve 11 provided in the second flow path to open and close the second flow path. At least one of the first valve and the second valve includes a valve element 31 opened and closed due to a differential pressure of the refrigerant of the gas phase, a valve seat 32, and a heating/cooling means 34 for heating or cooling the valve seat.
    • 要解决的问题:通过使用差压驱动型阀在吸附式热泵中实现阀的稳定的打开/关闭操作来提高性能。 吸附型热泵30包括吸附和解吸制冷剂21的吸附器1,2,蒸发制冷剂的蒸发器3,冷凝制冷剂的冷凝器4,设置在吸附器和蒸发器之间的第一流路5 允许气相制冷剂21X流入,设置在吸附器和冷凝器之间的第二流路6,以允许气相制冷剂在其中流动,第一阀10设置在第一流路中以打开和关闭第一 流路和设置在第二流路中的第二阀11,以打开和关闭第二流路。 第一阀和第二阀中的至少一个包括由于气相制冷剂的差压而打开和关闭的阀元件31,阀座32和用于加热或冷却阀的加热/冷却装置34 座位。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • Polydentate ligand, polynuclear metal complex, metal complex chain, and integrated structure of metal complex
    • 多金属配体,多金属复合材料,金属复合链和金属复合材料的综合结构
    • JP2007204404A
    • 2007-08-16
    • JP2006023735
    • 2006-01-31
    • Fujitsu Ltd富士通株式会社
    • MANABE TOSHIOTAKEI FUMIO
    • C07D487/04C07F15/04H01L29/06H01L29/66H01L51/05H01L51/30
    • PROBLEM TO BE SOLVED: To provide an integrated structure or the like of a metal complex, suitable for construction of nanoscale device, for example, a molecular element, a matrix circuit, a molecular functional device and a logic circuit by utilizing self-integration of molecules, applicable to miniaturization and refinement of each equipment such as an arithmetic unit, a display and a memory in an information and communication field, facilitating self-alignment or self-integration and also facilitating the manufacturing or the control of molecule arrangement, etc. SOLUTION: The integrated structure of the metal complex has a metal complex chain having a polynuclear metal complex and crosslinking ligands, and a linking molecule capable of forming a hydrogen bond with a biguanide-like structure positioned at least at one terminal in the polynuclear metal complex in the metal complex chain. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种金属络合物的整体结构等,适用于纳米级器件的构造,例如分子元件,矩阵电路,分子功能器件和利用自身的逻辑电路 分子的整合,适用于信息和通信领域中的诸如运算单元,显示器和存储器的每个设备的小型化和细化,促进自对准或自整合,并且还促进分子排列的制造或控制 等。解决方案:金属络合物的整体结构具有金属络合物链,其具有多核金属络合物和交联配体,以及能够形成氢键的连接分子,其双胍类结构位于至少一个 在金属络合物链中的多核金属络合物中的末端。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • 吸着式ヒートポンプ及びその駆動方法
    • 吸附热泵及其驱动方法
    • JP2014206364A
    • 2014-10-30
    • JP2013259809
    • 2013-12-17
    • 富士通株式会社Fujitsu Ltd
    • ASO NORIYASUMANABE TOSHIO
    • F25B17/08
    • H05K7/20363F25B17/083H05K7/20827Y02A30/277Y02A30/278Y02B30/62Y02B30/64
    • 【課題】小型で且つ冷熱出力が大きい吸着式ヒートポンプ及びその駆動方法を提供する。【解決手段】吸着式ヒートポンプは、冷媒の蒸気を発生する蒸発器と、蒸発器で発生した冷媒の蒸気を吸着する吸着剤が配置された第1の吸着器13a及び第2の吸着器13bと、第1の吸着器13a又は第2の吸着器13bで発生した冷媒の蒸気を凝縮する凝縮器12と、制御部30とを有する。制御部30は、凝縮器12に冷媒の蒸気の凝縮に使用される冷却水を通流させ、所定のタイミングで凝縮器12に冷媒の蒸発に使用される温水を通流させる。【選択図】図2
    • 要解决的问题:提供一种体积小且冷却输出大的吸附式热泵,提供吸收式热泵的驱动方法。吸收式热泵包括:蒸发器,其产生制冷剂蒸汽; 第一吸附器13a和第二吸附器13b,其中设置有用于吸附由蒸发器产生的制冷剂蒸汽的吸附剂; 冷凝器12,冷凝由第一吸附器13a或第二吸附器13b产生的制冷剂蒸汽; 以及控制部30.控制部30使用于制冷剂蒸汽冷凝的冷却剂流向冷凝器12,并且使制冷剂蒸汽的蒸发用的热水在规定的时刻流到冷凝器12。
    • 9. 发明专利
    • Adsorption type heat pump
    • 吸附式热泵
    • JP2012021712A
    • 2012-02-02
    • JP2010160236
    • 2010-07-15
    • Fujitsu Ltd富士通株式会社
    • MANABE TOSHIOYOSHIDA HIROAKIASO NORIYASU
    • F25B17/08
    • Y02A30/278Y02B30/64Y02P80/152
    • PROBLEM TO BE SOLVED: To provide an adsorption type heat pump improved in thermal efficiency in comparison with a conventional one.SOLUTION: An evaporator 31 lowers a temperature of cooling water passing in a cooling pipe 41 by evaporation of a refrigerant. The vapor generated in the evaporator 31 is adsorbed by powdered adsorbent 39 slipping off on an inclined face of an adsorber 33. The adsorbent 39 is moved upward by an adsorbent conveying device 38. Then the adsorbent is regenerated (dried) by being heated by a hot water pipe 44 in which the hot water of which a temperature is raised by waste heat, in a regenerator 34. The vapor generated in the regenerator 34 is condensed in a condenser 32 and liquefied to be transferred to the evaporator 31. Meanwhile, the adsorbent 39 regenerated by the regenerator 34 slips off on an inclined face of the regenerator 34 by gravitational force, and transferred to the inclined face of the adsorber 33 through an adsorbent storage tank 36.
    • 要解决的问题:提供一种与常规热泵相比热效率提高的吸附式热泵。 解决方案:蒸发器31通过制冷剂的蒸发来降低通过冷却管41的冷却水的温度。 在蒸发器31中产生的蒸气被吸附剂33的倾斜面上的粉末状吸附剂39吸附吸附。吸附剂39通过吸附剂输送装置38向上移动。然后通过加热吸附剂 在再生器34中,通过余热升温温水的热水管44.在再生器34中产生的蒸汽在冷凝器32中冷凝并液化,以转移到蒸发器31中。同时, 通过再生器34再生的吸附剂39通过重力在再生器34的倾斜面上滑落,并通过吸附剂储罐36转移到吸附器33的倾斜面。(C)2012,JPO&INPIT