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    • 1. 发明专利
    • Heating/cooling system
    • 加热/冷却系统
    • JP2009138970A
    • 2009-06-25
    • JP2007313449
    • 2007-12-04
    • Sanden Corpサンデン株式会社
    • KASHIMA HIDEOTANNO MINAOKAMIOKA HIDEYASUUCHIUMI FUJIO
    • F25B27/00F25B1/00F25B11/02F25B41/04
    • Y02P80/15
    • PROBLEM TO BE SOLVED: To provide a heating/cooling system capable of being constituted to be compact, and having high heating output and energy converting efficiency. SOLUTION: In this heating/cooling system 1A, a compressor 51 of a refrigerating air-conditioning cycle circuit 50 is connected with an expander 15 and a Stirling engine 12 of a Rankine cycle circuit 11. When the expander 15 and the Stirling engine 12 are driven, the compressor 51 is driven, and the heating is performed in the refrigerating air-conditioning cycle circuit 50. An operating medium of the Rankine cycle circuit 11 and a second operating medium of the refrigerating air-conditioning cycle circuit 50 exchange heat in a heat exchanger 16a. A cooling medium circulated in a cooling medium circulating circuit 35 absorbs the heat of a low-temperature portion of the Stirling engine 12 in a water jacket 33 and the heat inside of a heater 13 in an exhaust heat recovering unit 14, and stores the heat in a cooling medium storage tank 34. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够构造成紧凑且具有高加热输出和能量转换效率的加热/冷却系统。 解决方案:在该加热/冷却系统1A中,制冷空调循环回路50的压缩机51与朗肯循环回路11的膨胀机15和斯特林发动机1​​2连接。当膨胀机15和斯特林 发动机12被驱动,压缩机51被驱动,并且在制冷空调循环回路50中进行加热。兰金循环回路11的操作介质和制冷空调循环回路50的第二操作介质 热交换器16a中的热量。 在冷却介质循环回路35中循环的冷却介质吸收水套33中的斯特林发动机1​​2的低温部分的热量和排气热回收单元14中的加热器13内的热量,并储存热量 在冷却介质储罐34中。版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • AIR-CONDITIONING DEVICE
    • JPH08261516A
    • 1996-10-11
    • JP6304595
    • 1995-03-22
    • SANDEN CORP
    • WATANABE MITSUAKIOTA HIDETOSHINEGISHI MASAMITANNO MINAO
    • F24F3/08F24F5/00F25B29/00
    • PURPOSE: To provide an air-conditioning device capable of dehumidifying indoor air without increasing an equipment cost. CONSTITUTION: During heating operation, a heating medium on the high temperature side generated by a boiler 6 flows to each indoor machine 1 and indoor air is heated by each indoor machine 1. Meanwhile, during cooling operation, through switching of three-way valve 8 and 9, a heating medium on the low temperature side generated by a refrigerating machine 7 flows in each indoor machine 1 and indoor air is cooled by each indoor machine 1. Further, during dehumidifying operation, a heating medium on the high temperature side and a heating medium on the low temperature alternately flows to each indoor machine 1 in such a way that, in the indoor machine 2, three-way valves 8 and 9 repeat switching operation. This constitution removes a moisture content of indoor air through the flow of the heating medium on the low temperature side and heats indoor air through the flow of the heating medium on the high temperature side, whereby there is no need to arrange two systems of pipings for cooling and heating.
    • 7. 发明专利
    • AIR CONDITIONER
    • JP2000283523A
    • 2000-10-13
    • JP8568799
    • 1999-03-29
    • SANDEN CORP
    • TANNO MINAO
    • F24F11/02
    • PROBLEM TO BE SOLVED: To always operate an indoor unit in an operation mode coincident with that of a heat source side. SOLUTION: A temperature of a heating medium supplied from a refrigerator 2 or a boiler 3 to an indoor unit 1 side is detected. When the detected temperature is lower than a reference temperature for cooling, lighting LED is switched to flashing so that the unit 1 is operated in a cooling mode, while when the detected temperature is higher than a reference temperature for heating, the unit 1 is operated in a heating mode, and hence the mode of the unit 1 is automatically switched based of the temperature of the medium. In this case, when the detected temperature T is the reference temperature T1 or above for the cooling and the reference temperature T2 or below for the heating, the unit 1 is set to a stopping state, thereby preventing an erroneous operation of the unit 1 before the medium arrives at a target temperature. In this case, an operation stand-by mode until the temperature of the medium is arrived at the temperature T1 or T2 is displayed by respective display lamps of an operating unit.
    • 8. 发明专利
    • DEVICE FOR DISPOSING EMPTY CAN
    • JPH06142992A
    • 1994-05-24
    • JP30395592
    • 1992-11-13
    • SANDEN CORP
    • TANNO MINAOKANEKO TAKAAKI
    • B30B9/32
    • PURPOSE:To provide an empty can disposing device where only a thrown mate rial made of metal such as a steel can or an aluminium can can be thrown in, and the other material can be restricted from throwing. CONSTITUTION:In the empty can disposing device that the empty can A thrown in from a throw-in hole 2 is conveyed to an empty can disposing part by an empty can feeding device 4, an opening and closing door device 3 opening and closing the throw-in hole 2 is provided, and also a proximity switch 34 detecting whether the empty can being proximate to the throw-in hole 2 is made of a metal or not is provided. Since a control means driving the opening and closing door device to an opening direction when the proximity switch 34 detects the empty can A made of metal is provided, when the proximity switch 34 detects the empty can A made of metal such as the aluminium can or the steel can, the opening and closing door device 3 operates in the opening direction.