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    • 41. 发明专利
    • Gas shutoff device
    • 气体开关装置
    • JP2010216725A
    • 2010-09-30
    • JP2009064545
    • 2009-03-17
    • Panasonic CorpToho Gas Co LtdTokyo Gas Co Ltdパナソニック株式会社東京瓦斯株式会社東邦瓦斯株式会社
    • MURASE KOJIUEKI KOICHIOTANI TAKAHISANAKABAYASHI YUJIASANO KAZUTAKAKOBAYASHI MASATOMOWATANABE AKIRAKONO SACHIKOYUASA KENICHIRONAGAI NOZOMIISHIDA HIROSHISAKANO TAKAHIRO
    • F23K5/00F23N5/18G01F1/66G01F3/22
    • PROBLEM TO BE SOLVED: To release gas shutoff caused by an abnormality of a sensor generated in an unexpected state of a transient measurement condition.
      SOLUTION: This gas shutoff device includes a flow rate detecting section 11, a flow rate calculating section 12, an abnormal flow rate determining section 13, a valve drive section 14, a valve 15, a return input section 16, a sensor abnormality determining section 17, and a sensor abnormality release input section 18. A valve closing signal C is outputted and the valve 15 is shut off when the sensor abnormality determining section 17 determines an abnormality in the transient sensor, the shutoff of the gas due to the sensor abnormality generated in the unexpected state of transient measurement condition can be released by outputting a sensor abnormality releasing signal F to a sensor abnormality release input section 18, and outputting a valve opening signal E to return the valve 15 when the sensor abnormality release input section 18 receives the sensor abnormality release input from the external.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:释放在瞬时测量条件的意外状态下产生的传感器异常引起的气体截止。 解决方案:该气体截止装置包括流量检测部11,流量计算部12,异常流量判定部13,阀驱动部14,阀15,返回输入部16,传感器 异常判定部17和传感器异常释放输入部18.输出阀关闭信号C,当传感器异常判定部17判定瞬时传感器的异常时,关闭阀15,由于 通过向传感器异常释放输入部18输出传感器异常释放信号F,并且当传感器异常释放输入时输出阀开启信号E以返回阀15,可以解除在瞬时测量条件的意外状态下产生的传感器异常 部分18从外部接收传感器异常释放输入。 版权所有(C)2010,JPO&INPIT
    • 42. 发明专利
    • Gas supply security apparatus and gas meter
    • 气体供应安全装置和气体计
    • JP2010139360A
    • 2010-06-24
    • JP2008315529
    • 2008-12-11
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • KOBAYASHI MASATOMOSAKAI KATSUTO
    • G01F3/22F23K5/00F23N5/24
    • PROBLEM TO BE SOLVED: To provide a gas supply security apparatus having a security function regarding a gas supply to a gas using appliance, correctly obtaining a gas consumption condition in the appliance, and inexpensively improving security and convenience. SOLUTION: The gas supply apparatus includes: an inlet gas flow path for causing a gas to flow and enter from a gas source; an outlet gas flow path for branching the gas entering into the inlet gas flow path, and supplying it to each gas destination; a gas flow rate measuring means provided in the outlet gas flow path, and measuring a flow rate of the gas; and an abnormality detecting means for detecting an abnormal condition regarding the gas supply after the outlet gas flow path per outlet gas flow path based on a measurement result in the gas flow rate measuring means. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种具有关于气体使用装置的气体供应的安全功能的气体供应安全装置,正确地获得该器具中的气体消耗状态,并且廉价地提高了安全性和便利性。 气体供给装置包括:用于使气体从气体源流入并进入的入口气体流路; 出口气体流路,用于将进入入口气体流路的气体分支,并将其供应到每个气体目的地; 气体流量测量装置,设置在出口气体流路中,并测量气体的流量; 以及异常检测装置,用于根据气体流量测量装置的测量结果来检测关于每个出口气体流路的出口气体流路之后的气体供应的异常状况。 版权所有(C)2010,JPO&INPIT
    • 45. 发明专利
    • Method for inspecting ultrasonic gas meter parts and its apparatus
    • 检查超声波仪表部件及其装置的方法
    • JP2009216389A
    • 2009-09-24
    • JP2008056955
    • 2008-03-06
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • KOBAYASHI MASATOMO
    • G01B11/26G01B11/30G01F1/00G01F1/66G01N21/95
    • PROBLEM TO BE SOLVED: To inspect distortions of straightening vanes without contact, facilitate the inspection, and improve its inspection accuracy on inspections on straightening vanes for straightening a gas made to flow through a measuring channel. SOLUTION: In the method for inspecting ultrasonic gas meter parts (straightening units 4) provided with a straightening vane (16) for straightening a gas (G) made to flow through the measuring channel (6) and its inspection method, irradiation light (30, a laser beam 58) is irradiated to the straightening vane (16), or, alternatively, a test pattern (40) is projected to the straightening vane to obtain reflected light (32, laser reflected light 60) and a test pattern map (42, a reference pattern map 44) obtained from the straightening vane. The quality of the straightening vane (16) is determined through the use of distortion information which appears in the reflected light (32, laser reflected light 60) and the test pattern map. It is possible to inspect distortions of the straightening vane (16) without contact, facilitate the inspection, and improve its inspection accuracy. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了检查矫直叶片的接触失真,便于检查,并提高校直叶片检查精度,以矫正通过测量通道流动的气体。 解决方案:在用于矫正用于矫正通过测量通道(6)流动的气体(G)的矫直叶片(16)的超声波燃气表部件(矫直单元4)的检查方法及其检查方法中, 将光(30,激光束58)照射到矫直叶片16上,或者,将测试图案(40)投影到矫直叶片上以获得反射光(32,激光反射光60)和测试 从矫直叶片获得的图案图(42,参考图案图44)。 矫直叶片(16)的质量通过使用出现在反射光(32,激光反射光60)中的失真信息和测试图案图来确定。 可以不接触地检查矫直叶片(16)的变形,便于检查,提高检查精度。 版权所有(C)2009,JPO&INPIT
    • 46. 发明专利
    • Pressure fluctuation relieving member, tunnel structure, and moving body
    • 压力波动消除会员,隧道结构和移动体
    • JP2006022526A
    • 2006-01-26
    • JP2004200407
    • 2004-07-07
    • Tokyo Gas Co Ltd東京瓦斯株式会社
    • URABE YASUHIKOKOBAYASHI MASATOMOISHIKURA TAKEFUMI
    • E21F17/00E21D9/14
    • PROBLEM TO BE SOLVED: To provide a pressure fluctuation relieving member and a tunnel structure for reducing tunnel micro-pressure waves without causing the shape change of a train head vehicle, buffer work of a tunnel entrance, and new construction of a branch pit or the like of a tunnel.
      SOLUTION: The pressure fluctuation relieving member 1 disposed at the front face or back face in the moving direction of a moving body or within the tunnel structure through which the moving body passes, comprises activated carbon 2 having a pore structure with an average pore diameter of 10 nm or less, activated carbon holding members 3a, 3b for holding the activated carbon 2, and a frame body 4. The same pressure fluctuation relieving member as the pressure fluctuation relieving member 1 is arranged on the whole surface of an internal wall surface of the tunnel structure.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种减小隧道微压波的压力波动消除构件和隧道结构,而不会导致火车头车辆的形状变化,隧道入口的缓冲作业和分支的新构造 坑等等。 解决方案:设置在移动体的移动方向的前表面或背面或移动体通过的隧道结构内的压力波动消除构件1包括具有平均孔结构的活性炭2 孔径为10nm以下,用于保持活性炭2的活性炭保持部件3a,3b以及框体4.在内部的整个表面上配置与压力波动缓和部件1相同的压力波动缓和部件 隧道结构的墙面。 版权所有(C)2006,JPO&NCIPI
    • 48. 发明专利
    • Flow regulating instrument
    • 流量调节仪器
    • JP2005003534A
    • 2005-01-06
    • JP2003167873
    • 2003-06-12
    • Tokyo Gas Co LtdYazaki Corp東京瓦斯株式会社矢崎総業株式会社
    • SETO MINORUKOBAYASHI MASATOMOUSHIJIMA KAZUHIRO
    • G01F1/00F15D1/02G01F3/22
    • PROBLEM TO BE SOLVED: To provide a flow regulating instrument having high measurement accuracy and reducing the process regarding the flow rate measurement, while being miniaturized. SOLUTION: Flow regulating plates 14 mounted on a part of a flow passage 53 in a flow rate measuring device in which a flow sensor is installed have the same length in front and behind the flow sensor along the direction of the flow. A first mesh 15A and a second mesh 15B are disposed at the part of the flow passage 53 where the flow sensor is disposed, so as to sandwich the flow regulating plates 14. Further, a third mesh 15C and a fourth mesh 15D are provided on the upstream side of the first mesh 15A and the downstream side of the second mesh 15B at prescribed intervals, respectively. The first mesh 15A and the second mesh 15B have the equivalent structure, and are disposed symmetrically along the direction of the flow so as to sandwich the flow sensor. The third mesh 15C and the fourth mesh 15D have the equivalent structure, and are disposed symmetrically along the direction of the flow so as to sandwich the flow sensor. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:在小型化的同时,提供具有高测量精度和减少流量测量的过程的流量调节装置。 解决方案:安装在其中安装有流量传感器的流量测量装置中的流路53的一部分上的流量调节板14沿着流动方向在流量传感器的前后具有相同的长度。 第一网眼15A和第二网眼15B布置在流动传感器设置的流动通道53的部分处,以夹持流量调节板14.此外,第三网格15C和第四网格15D设置在 第一网眼15A的上游侧和第二网眼15B的下游侧分别以规定的间隔。 第一网眼15A和第二网眼15B具有等效结构,并且沿着流动方向对称地设置以夹持流量传感器。 第三网格15C和第四网格15D具有等效结构,并且沿着流动方向对称地设置,以夹持流量传感器。 版权所有(C)2005,JPO&NCIPI