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    • 1. 发明专利
    • Desiccant dehumidification apparatus
    • 除臭剂除湿装置
    • JP2003074906A
    • 2003-03-12
    • JP2002176336
    • 2002-06-17
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • EGAITSU TAKAOFUKUCHI TORUIKEMOTO HIROKITSUJIMOTO SOICHIRO
    • F24F3/153F24F3/14F24F3/147F24F6/08
    • F24F3/1423F24F2203/1012F24F2203/1032F24F2203/104F24F2203/1056F24F2203/1072F24F2203/1084
    • PROBLEM TO BE SOLVED: To provide a desiccant dehumidification apparatus capable of performing humidification besides dehumidification, and also eliminating generation of useless energy, need for a surplus apparatus and water feed piping. SOLUTION: A feed route 1 through which air is sucked from the outside of a room and fed in a room, and a discharge route 2 through which exhaust gas is sucked and discharged from the indoor to the outdoor, and juxtaposed with each other. A desiccant rotor 3 provided with a moisture absorbent and rotationally driven at a given rotation speed is disposed astride the air feed route 1 and the discharge route 2. When feed air fed in a room is dehumidified, exhaust air is heated in the suction side for exhaust gas for from the desicant rotor 3. When feed air fed in a room is humidified, heating is switched such that the feed air is heated in the suction side for feed air for from the desicant rotor 3 in the feed air route 1.
    • 要解决的问题:为了提供除除除湿之外还可以进行除湿的干燥剂除湿装置,并且还消除了无用的能量的产生,需要多余的装置和给水管道。 解决方案:从房间外部吸入空气并进入室内的进料路线1和排出气体从室内吸入排出到排出口2的排出路径2,并排配置。 设置有吸湿剂并以给定旋转速度旋转驱动的干燥剂转子3跨过空气供给路径1和排出路径2设置。当进入室内的进料空气被除湿时,排气在吸入侧被加热 从干燥转子3排出的废气。当进入室内的进料空气被加湿时,切换加热,使得进料空气在进料空气路径1中从干燥剂转子3的进料空气吸入侧被加热。
    • 2. 发明专利
    • Air conditioner
    • 冷气机
    • JP2003004255A
    • 2003-01-08
    • JP2001186676
    • 2001-06-20
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • EGAITSU TAKAOFUKUCHI TORUIKEMOTO HIROKI
    • F24F3/14F24F3/147F24F7/08
    • F24F3/1423F24F2203/1012F24F2203/1032F24F2203/104F24F2203/1056F24F2203/1072F24F2203/1084
    • PROBLEM TO BE SOLVED: To provide an air conditioner having size reduced in its height direction so as to be suitably mounted in an attic space of a dwelling house while assuring a sufficient dehumidifying capability.
      SOLUTION: This air conditioner is constructed such that an air supplying passage 1 arranged to supply surrounding air into a room and an air discharging passage 2 arranged to discharge indoor air out of the room are arranged side by side; a disk shaped desiccant rotor 3 provided with moisture absorbing material is installed over the air supplying passage 1 and the air discharging passage 2; and moisture is absorbed from air passing through the air supplying passage 1 into the desiccant rotor 3 under a state in which the desiccant rotor 3 is rotationally driven and at the same time moisture is discharged out of the desiccant rotor 3 into the air passing through the air discharging passage 2. Then, the desiccant rotor 3 is rotationally driven under a state in which the rotor is supported in a substantial horizontal attitude.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种在高度方向尺寸减小的空调,以适当地安装在住宅的阁楼空间中,同时确保足够的除湿能力。 解决方案:该空气调节器被构造成使得将室内空气供应到空间中的供气通道1和布置成将室内空气排出室外的排气通道2并排设置; 设置有吸湿材料的盘状干燥剂转子3安装在空气供给通道1和排气通道2的上方; 在干燥剂转子3被旋转驱动的状态下,通过空气供给通道1的空气被吸收到干燥剂转子3中,同时水分从干燥剂转子3排出到通过干燥剂转子3的空气中。 然后,干燥剂转子3在转子被支撑在大致水平姿态的状态下旋转驱动。
    • 5. 发明专利
    • ADSORPTION DEHUMIDIFICATION TYPE AIR CONDITIONER
    • JP2000283497A
    • 2000-10-13
    • JP9276199
    • 1999-03-31
    • OSAKA GAS CO LTD
    • KASHIWABARA YOSHITAKAYAMAGUCHI SHOJIIKEMOTO HIROKI
    • F24F3/14
    • PROBLEM TO BE SOLVED: To provide an adsorption dehumidification type air conditioner improved in economy and energy-saving property while achieving a high dehumidification capacity. SOLUTION: A dehumidification rotor 2 for carrying a moisture absorbent is provided so that it is positioned alternately at the draft path of air A to be conditional and the draft path of air R for regeneration attended with the rotation of each rotor part, a plurality of heat exchangers 7A and 7B for heating the air R for regeneration using separate warm heating media W1 and W2 with different temperatures are provided as a heat exchanger 7 for regeneration for heating the air R for regeneration to be passed for a rotor part 2r in a regeneration process being located at an air draft path out of the dehumidification rotors 2, and air R1 and R2 for regeneration with different temperatures heated separately by the heat exchangers 7A and 7B is passed in parallel for the rotor part 2r in a regeneration process in a form for passing to the part closer to the lower side in the rotary direction of the rotor, as higher the temperature of the air is.
    • 9. 发明专利
    • METHOD FOR OPERATING ADSORPTION TYPE REFRIGERATING SYSTEM
    • JP2000179978A
    • 2000-06-30
    • JP37565298
    • 1998-12-15
    • OSAKA GAS CO LTDNISHIYODO KUCHOKI KK
    • KASHIWABARA YOSHITAKAIKEMOTO HIROKIYONEZAWA YASUONAKANO HIROKINOBORIO TAKAHARU
    • F25B17/08
    • PROBLEM TO BE SOLVED: To provide a method for operating an adsorption type refrigerating system capable of improving a coefficient of performance with an effective cost and size by decreasing the quantity of heat except that for desorbing a refrigerant upon its desorption. SOLUTION: A heat exchanger 3 has two areas 4 and 5 divided by a partition wall 1 including a first heat transfer surface for heating and cooling a solid adsorbing material on one surface and a second heat transfer surface coming into contact with a heating medium on the other surface. A solid adsorbing material 2 is held in the first heat transfer surface area 4. In an adsorption type refrigerating system, while the first heat transfer surface area 4 is connected to a condenser 14 and an evaporator 15 by using the heat exchanger 3, the heat source device 7 of the heating medium and a cooler 8 are separated from and connected to the second heat transfer area 5. The heating medium is condensed and liquefied by the second heat transfer surface of the cooled partition wall 1. The solid adsorbing material 2 is heated by the condensing heat to desorb refrigerant vapor and evaporate and vaporize cooled heating medium by the heated second heat transfer surface. The solid adsorbing material 2 is cooled by the evaporating heat to adsorb the refrigerant vapor by the solid adsorbing material and output cold heat from the evaporator 14 connected thereto.
    • 10. 发明专利
    • DESICCANT DEHUMIDIFIER
    • JP2002276998A
    • 2002-09-25
    • JP2001074750
    • 2001-03-15
    • OSAKA GAS CO LTD
    • IKEMOTO HIROKITSUJIMOTO SOICHIRO
    • F24F3/147B01D53/26F24F3/14
    • PROBLEM TO BE SOLVED: To provide a desiccant dehumidifier capable of supplying the air at a low temperature and low humidity indoors at low driving energy consumption. SOLUTION: This desiccant dehumidifier has a total heat exchanger 9 exchanging the total heat of sensible heat and latent heat between the air passing through a primary side 9a and the air passing through the secondary side 9b and a dehumidifying rotor 1 allowing a dehumidifying agent to absorb moisture at the primary side 1a to dehumidify the air passing through the primary side 1a and releasing moisture from the dehumidifying agent for regeneration by the exposure to heated air at the secondary side 1b. A supply air path 3 is provided in such a manner that outdoor air is supplied indoors through the primary side 9a of the total heat exchanger 9 and the primary side 1a of the dehumidifying rotor 1 in order. An exhaust air path 10 is provided in such a manner that indoor air is exhausted outdoors through the secondary side 2b of the total heat exchanger 9. A heated air path 4 is provided in such a manner that the heated air heated by a heat source is exhausted outdoors through the secondary side 1b of the dehumidifying rotor 1.