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    • 1. 发明专利
    • Hot air supply device
    • 热空气供应装置
    • JP2011242091A
    • 2011-12-01
    • JP2010116563
    • 2010-05-20
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • MATSUSHITA ISAOHAYAMA TAKEHIKOSHIMIZU KAZUO
    • F24H3/04A61L9/015A61L9/22
    • PROBLEM TO BE SOLVED: To provide a hot water supply device capable of further improving the decomposition performance of harmful substances in air.SOLUTION: The hot water supply device including a hot air generating section for generating hot air from the air taken from an inlet 4, and an air distributing means for distributing the hot air generated from the hot air generating section to the external from an outlet 5 further includes a microplasma generating means for decomposing the harmful substances in the air by plasma discharge between a pair of microplasma electrodes, and an ozone decomposing means for decomposing and removing ozone. The microplasma generating means is disposed at an upstream side of an air trunk, and the ozone decomposing means is disposed at a downstream side.
    • 要解决的问题:提供能够进一步提高空气中有害物质的分解性能的热水供给装置。 解决方案:热水供应装置包括用于从入口4获取的空气产生热空气的热空气产生部分和用于将从热空气产生部分产生的热空气分配到外部的空气分配装置 出口5还包括用于通过一对微血浆电极之间的等离子体放电来分解空气中的有害物质的微生物产生装置和用于分解和除去臭氧的臭氧分解装置。 微生物发生装置设置在空气干线的上游侧,臭氧分解装置设置在下游侧。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Sterilizer
    • STERILIZER
    • JP2011240044A
    • 2011-12-01
    • JP2010116564
    • 2010-05-20
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • MATSUSHITA ISAOHAYAMA TAKEHIKOSHIMIZU KAZUO
    • A61L9/22A61L9/015H05H1/24
    • PROBLEM TO BE SOLVED: To obtain a sterilizer including: a microplasma generation part for keeping sterilization ability over a long time; and an ozonolysis catalyst part.SOLUTION: The sterilizer includes: the microplasma generation part 7; the ozonolysis catalyst part 8 arranged on the downstream side of a sterilized gas flow of the microplasma generation part 7. A second gas flow passage 6b where sterilized gas flows is arranged on the upstream side of the microplasma generation part 7 in parallel with a first gas flow passage 6a having a solid separation part 9 independently of the first gas flow passage 6a. The second gas flow passage 6b includes a combustion part 2. The sterilized gas is disinfected by microplasma and combustion heat respectively in a first state where the gas flows in the first gas flow passage 6a and a second state where the gas flows in the second gas flow passage 6b. In the second state, exhaust gas to be discharged from the combustion part 2 is allowed to flow through the ozonolysis catalyst part 8 and the microplasma generation part 7, so as to perform a regeneration operation to perform regeneration in the ozonolysis catalyst part 8 and the microplasma generation part 7.
    • 要解决的问题:获得包括:用于长时间保持灭菌能力的微生物发生部件的消毒器; 和臭氧分解催化剂部分。 解决方案:消毒器包括:微生物发生部分7; 臭氧分解催化剂部8配置在微生物发生部7的无菌气流的下游侧。灭菌气体流过的第二气体流路6b与第一气体平行配置在微生物发生部7的上游侧 流动通道6a具有独立于第一气体流动通道6a的固体分离部分9。 第二气体流路6b包括燃烧部2.在第一气体在第一气体流路6a中流动的第一状态和第二气体在第二气体中流动的第二状态下,消毒气体分别以微量和燃烧热消毒 流动通道6b。 在第二状态下,允许从燃烧部2排出的废气流过臭氧分解催化剂部8和微量生成部7,进行再生操作,以进行臭氧分解催化剂部8的再生, 微生物第7部分。版权所有(C)2012,JPO&INPIT
    • 3. 发明专利
    • Power generation-air conditioning system
    • 发电空调系统
    • JP2009250488A
    • 2009-10-29
    • JP2008097373
    • 2008-04-03
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • HAYAMA TAKEHIKOTOKUDA KAZUTOYAMAMURO KOZONAKAI YUJI
    • F25B27/00
    • PROBLEM TO BE SOLVED: To increase flexibility in system design by rational improvement, to improve use efficiency of electric power, and further to effectively reduce demand. SOLUTION: This power generation-air conditioning system includes an engine-driven heat pump device 2 with a power generating function constituted by interlocking and connecting an AC generator 6 and a compressor to an engine, and a refrigerant from the compressor is supplied to an outdoor-side heat exchanger and an indoor-side heat exchanger. AC power generated by the AC generator 6 is converted into DC power by a convertor 17 for generated output, and the DC power is supplied to a DC electric motor 15 of an outdoor fan 13. A convertor 26 for commercial power is connected to a DC power line 24 from the convertor 17 for generated output, a commercial power source 25 is connected to a convertor 26 for commercial power, the AC power from the commercial power source 25 is converted into DC power and joined to generated output, and the joined DC power is supplied to a DC electric motor 20 of an indoor fan 18. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:通过合理的改进提高系统设计的灵活性,提高电力的使用效率,进一步有效降低需求。 解决方案:该发电 - 空调系统包括具有发电功能的发动机驱动的热泵装置2,发电功能是通过将AC发电机6和压缩机联接并连接到发动机而构成的,并且来自压缩机的制冷剂被供给 室外侧热交换器和室内侧热交换器。 由交流发电机6产生的交流电力由用于产生输出的转换器17转换为直流电力,并且直流电力被提供给室外风扇13的直流电动机15.用于商业电力的转换器26连接到DC 来自用于生成输出的转换器17的电力线24,商用电源25连接到用于商业电力的转换器26,来自商用电源25的AC电力被转换为DC电力并被连接到产生的输出,并且所连接的DC 电力被供应到室内风扇18的直流电动机20中。版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Power generating-air conditioning system
    • 发电空调系统
    • JP2009236417A
    • 2009-10-15
    • JP2008083977
    • 2008-03-27
    • Osaka Gas Co Ltd大阪瓦斯株式会社
    • HAYAMA TAKEHIKOTOKUDA KAZUTOYAMAMURO KOZONAKAI YUJI
    • F24F11/02F25B27/00
    • PROBLEM TO BE SOLVED: To drive an engine-driven type heat pump device with a power generation function even during power failure or the like. SOLUTION: The engine driven type heat pump device 2 with the power generation function is provided, wherein an AC generator 6 and a compressor are interlocked and connected to an engine, and a coolant from the compressor is supplied to an outdoor side heat exchanger and an indoor side heat exchanger. AC power generated by the AC generator 6 is converted into DC power by a converter 17 for generated electric power, and the DC power is supplied to an outdoor fan 13. A converter 26 for commercial electric power is connected to a DC power line 24 from the converter 17 for generated electric power, a commercial power source 25 is connected to only the converter 26 for commercial electric power, AC power from the commercial power source 25 is converted into DC power and merged with the generated electric power, the merged DC power is converted into AC power by an inverter 29, and it is supplied to an indoor fan 18 and a cell motor 27. The engine can be started even during power failure by connecting a battery 28 to the DC power line 24. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使在停电等期间也可以驱动具有发电功能的发动机驱动型热泵装置。 解决方案:提供具有发电功能的发动机驱动型热泵装置2,其中AC发电机6和压缩机互锁并连接到发动机,并且来自压缩机的冷却剂被供应到室外侧热 交换器和室内侧热交换器。 由交流发电机6产生的交流电力由转换器17转换为直流电力,以产生电力,并将直流电力提供给室外风扇13.商用电力用转换器26与直流电力线24相连接, 用于生成电力的转换器17,商用电源25仅连接到用于商用电力的转换器26,来自商用电源25的AC电力被转换为DC电力并且与所生成的电力合并,合并的DC电力 由逆变器29转换为交流电力,并被提供给室内风扇18和电池电动机27.通过将电池28连接到直流电力线24,发动机即使在停电期间也可以起动。

      版权所有 (C)2010,JPO&INPIT

    • 5. 发明专利
    • Power generating-air conditioning system
    • 发电空调系统
    • JP2010007879A
    • 2010-01-14
    • JP2008164452
    • 2008-06-24
    • Cogene Techno Service:KkOsaka Gas Co Ltd大阪瓦斯株式会社株式会社コージェネテクノサービス
    • TOKUDA KAZUTOHAYAMA TAKEHIKONAKAJIMA TAKASHIYAMASHITA SACHIFUMI
    • F25B27/00H02P9/04
    • Y02B30/745Y02E20/14
    • PROBLEM TO BE SOLVED: To perform air-conditioning by driving an engine driven heat pump device with a power generating function even in a state that power supply from a commercial power source is stopped by power failure. SOLUTION: The engine-driven heat pump device 2 with the power generating function in which an AC generator and a compressor are linked and connected with an engine, is started by power supply from the commercial power source 10, a refrigerant from the compressor is supplied to an outdoor-side heat exchanger and an indoor-side heat exchanger, and air-conditioning is performed by supplying AC power generated by the engine-driven heat pump device 2 with the power generating function and the power from the commercial power source 10 to an air conditioner 2 and a power load. In power failure, an outside engine 30 is started to generate power by an outside generator 31, and the engine-driven heat pump device 2 with the power generating function is started by supplying the generated power to perform the air-conditioning similar as that at a normal time. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使在通过电力故障停止来自商用电源的电源的状态下,通过驱动具有发电功能的发动机驱动的热泵装置来进行空调。 解决方案:具有发电功能的发动机驱动的热泵装置2,其中交流发电机和压缩机与发动机连接并连接,通过来自商用电源10的电源开始,来自 将压缩机供给到室外侧热交换器和室内侧热交换器,通过将由发动机驱动的热泵装置2产生的交流电力提供给发电功能和来自商用电源的电力来进行空调 源10到空调2和电力负载。 在停电时,通过外部发电机31启动外部发动机30发电,通过供给发电电力来进行具有发电功能的发动机驱动的热泵装置2,进行与上述相同的空调 正常时间 版权所有(C)2010,JPO&INPIT