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    • 15. 发明专利
    • Flow regulator
    • 流量调节器
    • JP2011033133A
    • 2011-02-17
    • JP2009180535
    • 2009-08-03
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDEMURATA TAKEHARU
    • F16K37/00E03C1/086F16K3/06F16K35/04F16L55/00
    • PROBLEM TO BE SOLVED: To provide a compact flow regulator of a simple constitution capable of regulating a flow rate to obtain easily a desired delivery state even by an unskilled worker. SOLUTION: The flow regulator is constituted to join an upper member 2 to a lower member 3 which are cylindrical-shaped and have the same outside diameters. An upper fluid passage 4 and a lower fluid passage 5 extended in a direction along the center axis of the flow regulator are formed in the upper member 2 and the lower member 3. An overlapped area of a downstream end opening 13 of the upper fluid passage 4 and an upstream end opening 14 of the lower fluid passage 5 is regulated by the relative rotation of the upper member 2 to the lower member 3 to regulate a restriction flow rate. A regulation amount confirming part is provided with a scale on outer circumferential faces of the upper member 2 and the lower member 3 to be regulated easily to a defined restriction flow rate. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种简单的结构的紧凑型流量调节器,其能够即使由非熟练工人也能够调节流量以容易地获得期望的输送状态。 解决方案:流量调节器被构造成将上部构件2连接到圆柱形且具有相同外径的下部构件3。 在上部构件2和下部构件3中形成有沿流动调节器的中心轴线方向延伸的上部流体通道4和下部流体通道5.上部流体通道的下游端口13的重叠区域 4和下部流体通道5的上游端开口14由上部构件2相对于下部构件3的相对旋转来调节限制流量。 调节量确认部分在上部构件2和下部构件3的外周面上设置有容易被限制的限定流量。 版权所有(C)2011,JPO&INPIT
    • 16. 发明专利
    • Method for setting gas rate
    • 用于设定气体速率的方法
    • JP2011022642A
    • 2011-02-03
    • JP2009164581
    • 2009-07-13
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDENISHIDA JUNICHIKURASHINA YASUTOSHI
    • G01D4/00G06Q30/06G06Q50/00G06Q50/06H01L31/042
    • Y02B70/343Y02B70/346Y02E10/50Y04S20/34Y04S20/525
    • PROBLEM TO BE SOLVED: To propose a method for setting a gas rate which is valid for promoting photovoltaic power generation and gas in a general housing equipped with a photovoltaic power generation device. SOLUTION: In a method for setting a gas rate in a gas consumption place to which power is supplied by photovoltaic power generation, a gas rate in the power generation period of a photovoltaic power generation device 6 (ST1) and a preliminarily set power generation validating time zone 24S (ST2) is calculated by using a discount gas volume-controlled unit price b1 (ST4, ST5), and otherwise, the gas rate is calculated by using a basic gas volume-controlled unit price bo (ST3, ST5). Thus, it is possible to vary a gas rate menu, and to promote the combined use of photovoltaic power generation and gas. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提出一种在配备有光伏发电装置的普通房屋中设置有效促进光伏发电和气体的气体比率的方法。 解决方案:在通过光伏发电供给电力的气体消耗地设定气体率的方法中,将光电力发电装置6(ST1)的发电期间的气体率设定为预先设定 通过使用折扣气体体积控制单价b1(ST4,ST5)计算发电验证时间段24S(ST2),否则,通过使用基本气体体积控制单价bo(ST3, ST5)。 因此,可以改变气体速率菜单,并且促进光伏发电和气体的组合使用。 版权所有(C)2011,JPO&INPIT
    • 18. 发明专利
    • Prepaid-system gas supply control method and gas supply control system, and gas residual amount display device
    • 预制系统气体供应控制方法和气体供应控制系统和气体残留量显示装置
    • JP2010282449A
    • 2010-12-16
    • JP2009135728
    • 2009-06-05
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDENISHIDA JUNICHI
    • G07F15/02G01D4/14G01F3/22G06Q20/00G06Q20/28G06Q50/00G06Q50/06
    • PROBLEM TO BE SOLVED: To provide a prepaid-system gas supply control system in which device cost is reduced without needing provision of a new communication line at the time of installation. SOLUTION: A home display device 3 connected to a gas meter 2 is installed in each gas consumption place 6. When transmitting a gas purchase request to a server 5 from a communication terminal 12 such as a cellphone and performing a money payment procedure, the server 5 performs settlement processing of a gas purchase price, and issues a rewriting code effective in only the home display device 3 storing and holding an in-subtraction-counter-start point based on the in-subtraction-counter-start point and a gas purchase amount received from the communication terminal 12. The home display device 3 collates a generated collation code with the input rewriting code based on the stored in-subtraction-counter-start point, decides whether or not it is an effective rewriting code, and adds the gas purchase amount to a subtraction counter 7 when it is effective. At that time, the in-subtraction-counter-start point is updated to a value different from before the addition. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种在安装时不需要提供新的通信线路的设备成本降低的预付系统气体供应控制系统。

      解决方案:连接到燃气表2的家用显示装置3安装在每个气体消耗地方6.当从诸如手机的通信终端12向服务器5发送气体购买请求并执行货币支付程序 服务器5执行气体购买价格的结算处理,并且仅在存储并保存减去计数器起始点的家用显示装置3中发出有效的重写代码,该减重计数器起始点基于减法计数器起始点,并且 从通信终端12接收到的气体购买量。家庭显示装置3基于存储的减法计数器起始点将产生的对照代码与输入的重写代码进行核对,判定其是否是有效的重写代码, 并且当有效时将气体购买量添加到减法计数器7。 此时,减法计数器起始点被更新为与添加之前不同的值。 版权所有(C)2011,JPO&INPIT

    • 20. 发明专利
    • Gas divided measuring system
    • 气体分析测量系统
    • JP2010175526A
    • 2010-08-12
    • JP2009021893
    • 2009-02-02
    • Toyo Keiki Co Ltd東洋計器株式会社
    • TSUCHIDA YASUHIDEKURASHINA YASUTOSHI
    • G01F3/22
    • PROBLEM TO BE SOLVED: To provide a gas divided measuring system for divided-measuring the gas used amount corresponding to an actual gas used state by suppressing the integration error by a long-time counter. SOLUTION: This divided measuring system 4 built in a display device 3, based on the gas flow rate supplied from a gas meter 2 side, integrates the gas used amount by a gas appliance for hot-water supply with a large-flow-rate counter 42, integrates the gas used amount by a gas appliance for heating with a long-time counter 43, and integrates the gas used amount by a gas appliance for a kitchen with a normal counter 44. A divided measuring control section 41 stops the integration by the long-time counter 43 on months of May to September when the gas appliance for heating is not used, and switches the integration condition of the long-time counter 43 to a severe side on transition months (April and October) between used months (November to March) and non-use months of the gas appliance for heating. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种气体分割测量系统,用于通过长时间计数器抑制积分误差来分开测量与实际气体使用状态相对应的气体使用量。 解决方案:基于从燃气表2侧供给的气体流量,内置在显示装置3中的分割测量系统4将用于热水供给的燃气器具的气体使用量与大流量 计数器42通过燃气用具与长时间计数器43一起加热气体使用量,并将用于厨房的燃气器具的气体使用量与普通计数器44进行积分。分开的测量控制部分41停止 5月至9月期间长期柜台43的整合在不使用加热燃气用具的情况下,将长期柜台43的整合状况转变为过渡月份(4月和10月) 二月份(十一月至三月)及不用燃气用具供暖的月份。 版权所有(C)2010,JPO&INPIT