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    • 1. 发明专利
    • 加湿器および暖房加湿器
    • 除湿器和听觉加湿器
    • JP2014228215A
    • 2014-12-08
    • JP2013108997
    • 2013-05-23
    • 株式会社ガスターGastar Corp東京瓦斯株式会社Tokyo Gas Co Ltd
    • ISOZAKI TAKESHIMOGI TORU
    • F24F6/00F24D3/00F24F6/02
    • 【課題】熱源機から延設された循環経路を循環する温水を熱源とし、別途、給水管を設けることなく加湿用の水を得ることのできる加湿器を提供する。【解決手段】熱源機30は温水を循環経路4に循環させると共に、循環する水が減った場合は水を補給する機能を備えている。加湿器10は、循環経路4を循環する温水を熱源に貯水部11内の水を熱交換器12で昇温し蒸発させて加湿する。また、貯水部11の水位を水位センサ19で検出し、所定の水位が維持されるように、循環経路4から取水した水を浄水部18で浄水した後、貯水部11に補給する。【選択図】図1
    • 要解决的问题:提供一种加湿器,其中通过从热源机器延伸的循环路径循环的热水用作热源,并且可以在不分开设置供水管的情况下获得用于加湿的水。解决方案:A 热源机30具有通过循环路径4循环热水并且在循环水减少时供水的功能。 加湿器10通过增加储水部11内的水的温度进行加湿,并且通过使用循环路径4循环的热水作为热源,通过热交换器12使水蒸发。 此外,由水位传感器19检测蓄水部11的水位,在通过水净化部18净化后,将从循环路径4吸入的水供给到储水部11, 可以保持预定的水位。
    • 2. 发明专利
    • Movable radiator
    • 可移动散热器
    • JP2008185234A
    • 2008-08-14
    • JP2007017480
    • 2007-01-29
    • Gastar CorpTokyo Gas Co Ltd東京瓦斯株式会社株式会社ガスター
    • MATSUMAE KAZUNORIKAGIYA SHINICHIKIMURA KOTAROMOGI TORU
    • F24D3/16F24F5/00
    • PROBLEM TO BE SOLVED: To provide a foldable movable radiator capable of being properly installed on a tall-skirted window and a sweeping-out window of a dwelling house.
      SOLUTION: This movable radiator 1 comprises a radiator main body 2 composed of four sheets of radiation units 4-7, and a guide rail 3 for suspending and supporting the radiation units at an upper part of the main body 2. Each radiation unit comprises a frame 12 and a group of radiation pipes 8 disposed in the frame 12. The group of radiation pipes 8 is classified into a hot water advancing system 8a and a hot water returning system 8b, and constituted to allow the hot water to flow in a hot water advancing pipe 8i and a hot water returning pipe 8j. A right frame 12b is provided with three hinges 9-11, so that the radiation units 4, 5 are constituted to be foldable. The hinges 9, 10 are provided with hot water flow channels inside.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够适当地安装在住房的高架窗和清扫窗的可折叠的可移动散热器。 解决方案:该可移动散热器1包括由四片辐射单元4-7组成的散热器主体2和用于在主体2的上部悬挂和支撑辐射单元的导轨3.每个辐射 单元包括框架12和布置在框架12中的一组辐射管8.该组辐射管8被分为热水前进系统8a和热水返回系统8b,并且构成为允许热水流动 在热水供给管8i和热水返回管8j中。 右框架12b设置有三个铰链9-11,使得辐射单元4,5构成为可折叠的。 铰链9,10内部设有热水流动通道。 版权所有(C)2008,JPO&INPIT
    • 3. 发明专利
    • Oxygen combustion burner and furnace having the same and its operating method
    • 氧气燃烧器和具有该燃烧器的燃烧器及其运行方法
    • JP2005016854A
    • 2005-01-20
    • JP2003183437
    • 2003-06-26
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • MOGI TORUTAKEI MASARUSOMEYA YUSHI
    • F23D14/22F23C99/00F23D99/00F23L7/00F23C11/00F23D21/00
    • Y02E20/344
    • PROBLEM TO BE SOLVED: To provide a heating furnace having an oxygen combustion burner as a heat source, wherein exhaust gas treatment performance and temperature distribution performance are well developed even in the operation of the furnace or in a temperature rise process and pre-purge is performed with air before operation while preventing longer run of the temperature rise process due to a volume reduction of exhaust gas specific to oxygen combustion. SOLUTION: The oxygen combustion burner has an air nozzle as well for supplying air to fuel to be blown out of a fuel nozzle, whereby both air mono-fuel combustion and oxygen mono-fuel combustion are allowed. The oxygen combustion burner performs pre-purge with air from the air nozzle and the temperature rise process for the furnace with air combustion. Heating melting is carried out by oxygen combustion. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种具有氧气燃烧器作为热源的加热炉,其中即使在炉的运行中或者在升温过程中,排气处理性能和温度分布性能也良好地发展, - 在操作之前用空气进行喷射,同时防止由于氧气燃烧特定的废气的体积减少而引起的温度升高过程的长时间运行。 解决方案:氧气燃烧器具有一个空气喷嘴,用于将空气供给从燃料喷嘴吹出的燃料,从而允许空气单燃料燃烧和一氧化碳燃料燃烧。 氧气燃烧器通过空气喷嘴进行空气预吹扫,并进行空气燃烧的炉子升温过程。 加热熔化通过氧气燃烧进行。 版权所有(C)2005,JPO&NCIPI
    • 4. 发明专利
    • Burner flame detecting method for furnace having burner as heat source and furnace equipped with burner flame detecting device
    • 具有燃烧器的燃烧器燃烧器火焰检测方法作为热源和配备燃烧器火焰检测装置的炉
    • JP2005016853A
    • 2005-01-20
    • JP2003183412
    • 2003-06-26
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • MOGI TORUTAKEI MASARUSOMEYA YUSHI
    • F23N5/08
    • PROBLEM TO BE SOLVED: To provide a furnace having a flame detector in the form of detecting lights (infrared beams) emitted by flames, effectively avoiding misfire detection of the flame detector in error in spite of the normal combustion of a burner.
      SOLUTION: The furnace 1 having an oxygen combustion burner 10a as a heat source with a fuel nozzle 12 and an oxidizer nozzle 13 comprises the flame detector 20 arranged on the opposite side to a blow-out port 14 of the fuel nozzle 12 in the direction of its axis L. An area ahead of the flame detector 20 is scavenged by the blow-out force of fuel gas, therefore suppressing the decay of the lights of the flames and effectively preventing misfire erroneous detection of the flame detector 20.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种具有以火焰发出的光(红外光束)形式的火焰检测器的炉子,尽管燃烧器的正常燃烧有效地避免了火焰检测器的失火检测。 解决方案:具有燃烧喷嘴12和氧化剂喷嘴13的作为热源的氧气燃烧器10a的炉子1包括布置在燃料喷嘴12的吹出口14的相反侧的火焰检测器20 在其轴线L的方向上。由燃料气体的吹出力清除火焰检测器20之前的区域,从而抑制火焰的光的衰减,并有效地防止火焰检测器20的失火错误检测。 版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • System and method of analyzing combustion condition
    • 分析燃烧条件的系统与方法
    • JP2005274108A
    • 2005-10-06
    • JP2004092459
    • 2004-03-26
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • MOGI TORU
    • F23N5/24F23N5/08F23N5/16
    • PROBLEM TO BE SOLVED: To provide a system and a method of analyzing combustion condition capable of detecting the generation of oscillating combustion in combustion equipment such as a boiler, a suction type water heating/cooling device and a water heater.
      SOLUTION: Combustion noise (fluctuation of pressure) and emission intensity fluctuation (fluctuation of heat generation) of flames burning in combustion equipment are measured at the same time, and relative function of both the two measurement values are analyzed to determine existence of combustion noise due to oscillating vibration and whether combustion condition is transferring condition, wherein probability of instability in combustion is high, or not.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够检测在诸如锅炉,吸入式水加热/冷却装置和热水器的燃烧设备中产生振荡燃烧的燃烧条件的系统和方法。 解决方案:同时测量燃烧设备中燃烧的燃烧的燃烧噪声(压力波动)和发射强度波动(发热波动),并分析两个测量值的相对函数,以确定 由于振荡振动引起的燃烧噪声以及燃烧条件是否转移,其中燃烧不稳定的概率高或不高。 版权所有(C)2006,JPO&NCIPI
    • 6. 发明专利
    • 加熱調理機器
    • 加热烹饪机
    • JP2015025606A
    • 2015-02-05
    • JP2013155086
    • 2013-07-25
    • 東京瓦斯株式会社Tokyo Gas Co Ltd
    • KASHIMA AKIHIROKUROKAWA MIDORIMOGI TORU
    • F24C15/34
    • 【課題】調理時の使用性を悪化させること無く、調理面から放射される輻射熱の拡散を抑止する。【解決手段】加熱調理機器1は、一様な調理面11Aを有する加熱調理部11を上部に備え、加熱調理部11の下方に加熱調理部11を加熱する熱源部を備える機器本体10と、加熱調理部11の前方側の遮熱位置と加熱調理部11の前方側を開放する開放位置との間で機器本体10に揺動自在に支持される可動遮熱体20と、可動遮熱体20を揺動させる取っ手21とを備える。【選択図】図1
    • 要解决的问题:抑制从烹饪表面发射的辐射热的扩散,而不会降低烹饪过程中的可用性。解决方案:加热烹饪器1包括:炊具主体10,其包括设置在上部的加热烹饪部11, 均匀烹调面11A,其包括设置在加热烹调部11的下方的用于加热加热烹调部11的热源部; 在隔热加热烹调部11的前侧的隔热位置与开放加热烹调部11的前侧的打开位置之间由炊具主体10摆动地支撑的可动隔热构件20; 以及摆动可移动隔热构件20的把手21。
    • 8. 发明专利
    • Power generating device and its operation control method
    • 发电装置及其运行控制方法
    • JP2003065083A
    • 2003-03-05
    • JP2001252697
    • 2001-08-23
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • MOGI TORUKAGIYA SHINICHI
    • F02C9/40
    • Y02E50/12
    • PROBLEM TO BE SOLVED: To provide an operation control method of a power generating device by which a heating value of a fuel like biogas can be obtained in real time during operation and optimum control of the power generation output can be achieved without matching fuel schedule with the heating value.
      SOLUTION: The power generator is provided with systems for supplying biogas and 13A city gas respectively, a combustor 1 to which the plurality of fuels are supplied, the gas turbine 2 rotating with flue gas G of the combustor 1, a power generation means 3 for driving with a gas turbine 2 and a control means 4 for controlling a mixing ratio of the plurality of fuels from power generation output. The control means 4 contains a storage means 6 for storing the fuel schedule 5 set in advance, comparison means 7 for comparing the fuel schedule 5 and the power generation output, a judgment means 8 for judging whether to change the mixing ratio of the plurality of fuels, and a control signal generating means 9 for generating signal controlling the mixing ratio of the plurality of fuels on the basis of the judgment result by the judgment means 8.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种发电装置的操作控制方法,通过该操作控制方法可以在运行期间实时获得诸如生物气体之类的燃料的发热值,并且可以在不匹配燃料计划的情况下实现发电输出的最佳控制 热值。 解决方案:发电机分别设有用于供应沼气和13A城市燃气的系统,供应多种燃料的燃烧器1,与燃烧器1的烟气G一起旋转的燃气轮机2,用于 用燃气轮机2进行驱动,以及用于控制多个燃料与发电输出的混合比的控制装置4。 控制装置4包括用于存储预先设定的燃料调度表5的存储装置6,用于比较燃料调度表5和发电输出的比较装置7,用于判断是否改变多个 燃料,以及控制信号发生装置9,用于根据判断装置8的判断结果产生控制多种燃料的混合比的信号。
    • 9. 发明专利
    • Infrared combustion device
    • 红外燃烧装置
    • JP2014029256A
    • 2014-02-13
    • JP2013067586
    • 2013-03-27
    • Tokyo Gas Co Ltd東京瓦斯株式会社Narita Seitosho:Kk株式会社成田製陶所
    • MOGI TORUSOGO SAKURAKOYASUDA MASUOGOTO SATORU
    • F23D14/22
    • PROBLEM TO BE SOLVED: To provide an infrared combustion device to fundamentally solve a problem on occurrence of backfire, and stabilize combustion flame.SOLUTION: An infrared combustion device 1 includes a device body 10, and a red-heating radiation plate 20 disposed at a heated object side of the device body 10. The red-heating radiation plate 20 includes a plurality of burner port portions 21 formed with recessed portions 21A, on a surface of the red-heating radiation plate 20. Tips of the through holes 22 penetrating through the red-heating radiation plate 20 in a thickness direction, are communicated with the burner port portions 21, and gas outgoing ports 23A of gas supply paths 23 disposed in the through holes 22, face the burner port portions 21. In the device body 10, a combustion air supply portion 10A communicated with the through holes 22 and fuel gas supply portions 10B communicated with the gas supply paths 23 are independently disposed, and mixing spaces for a fuel gas released from the gas outgoing ports 23A and the combustion air supplied through the through holes, are formed in the recessed portions 21A of the burner port portions 21.
    • 要解决的问题:提供一种红外线燃烧装置,从根本上解决发生回火的问题,并且稳定燃烧火焰。解决方案:红外线燃烧装置1包括装置主体10和红色加热辐射板20, 红色加热辐射板20包括在红色加热辐射板20的表面上形成有凹部21A的多个燃烧器口部分21.穿透通孔22的尖端 红色加热用辐射板20在厚度方向上与燃烧口部21连通,设置在通孔22中的气体供给路径23的气体排出口23A与燃烧器口部21相对。在装置主体10 与通孔22连通的燃烧空气供给部10A和与气体供给路23连通的燃料气体供给部10B被独立地配置,燃料气体r的混合空间 在燃烧器口部21的凹部21A中形成有从气体输出口23A排出的通过通孔供给的燃烧空气。