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    • 4. 发明专利
    • Oil feeder, oil feeding method and program
    • 油料进料器,油料送料方法和程序
    • JP2003312797A
    • 2003-11-06
    • JP2002113267
    • 2002-04-16
    • Nec Infrontia CorpNecインフロンティア株式会社
    • KINO SHUHO
    • B60S5/02B67D7/08B67D7/28B67D5/28B67D5/08
    • PROBLEM TO BE SOLVED: To provide an oil feeder, an oil feeding method and a program with which handling of the change after oil feeding can be efficiently done by controlling the amount of oil to be fed so that the charge do not include fractions less than a predetermined decimal when feeding oil to a vehicle at a gas station or the like. SOLUTION: The oil feeder includes a plurality of oil feeding parts for feeding a kind of oil among a plurality of kinds of oil to a vehicle or the like. The oil feeder includes a controller which calculates the oil charge when the oil has been fed to a full tank level from one of the oil feeding parts and, if the charge includes fractions less than the predetermined decimal, additionally feeds the oil until the charge includes no fraction. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供给油机,给油方法和程序,通过控制供给的油量,可以有效地进行供油后的变更处理,使得装料不包括 在加油站等向车辆供油时,小于预定十进制的分数。 解决方案:给油机包括多个供油部分,用于将多种油中的一种油进料到车辆等。 给油机包括控制器,该控制器计算当油从其中一个供油部分供油到满罐水位时的油量,并且如果所述装料包含小于预定十进制数的馏分,则另外进料油直到包含 没有分数。 版权所有(C)2004,JPO
    • 6. 发明专利
    • Oil feeder
    • 油料进料器
    • JP2003072899A
    • 2003-03-12
    • JP2001265263
    • 2001-09-03
    • Tatsuno Corp株式会社タツノ・メカトロニクス
    • TATSUNO HIYOSHI
    • B67D7/14B67D7/08B67D7/22B67D7/24B67D7/84B67D5/14B67D5/08B67D5/22B67D5/24B67D5/64
    • PROBLEM TO BE SOLVED: To provide an oil feeder that simplifies the setting of oil feed data and improves operability.
      SOLUTION: The oil feeder comprises a main body case 11. The main body case 11 has a device case 14 accommodating oil feed mechanisms 12. The main body case 11 is erected on a narrow long island 1 having oil feed areas 2 on its both sides and formed such that the front and rear facing the oil feed areas 2 include consoles used to perform an oil feed operation. The oil feeder also comprises an external machine 32. The external machine 32 has a display case 15 disposed in the upper portion of the device case 14 and has display panels 22 on its front and rear. The external machine 32 also has data input/output devices that are respectively attached to the front and rear display panels 22 and used not only to output oil feed setting data but also to output an oil feed bill stating the amount of money for the fed oil based upon the oil feed data.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种简化给油数据设置并提高可操作性的给油器。 解决方案:给油器包括主体壳体11.主体壳体11具有容纳进油机构12的装置壳体14.主体壳体11竖立在狭长的长岛1上,其两侧具有供油区域2 并且形成为使得面向供油区域2的前后面包括用于进行供油操作的控制台。 供油器还包括外部机器32.外部机器32具有设置在设备壳体14的上部中的显示壳体15,并且在其前部和后部具有显示面板22。 外部机器32还具有分别附接到前后显示面板22的数据输入/输出设备,不仅用于输出供油设置数据,而且还用于输出供油纸,其中说明供油的油量 基于供油数据。
    • 7. 发明专利
    • Gas supplying device
    • 气体供应装置
    • JP2002372192A
    • 2002-12-26
    • JP2001182335
    • 2001-06-15
    • Tokico Ltdトキコ株式会社
    • TAKAHASHI FUTOSHIOGASAWARA KOJI
    • B60S5/02B67D7/08F17C5/06F17C13/04B67D5/08
    • PROBLEM TO BE SOLVED: To improve reliability when operating a manual depressure valve provided in a dispenser unit during the fill-up operation.
      SOLUTION: In this gas supplying device 11, the manual depressure valve 30 is arranged in a gas supplying pipeline 2. The manual depressure valve 30 is opened by the manual operation when performing the maintenance or when the generation of abnormality in other equipment is detected, and discharges the gas inside of the gas supplying pipeline 24 to a low-pressure pipeline 47 to reduce the pressure inside of the gas supplying pipeline 24. The manual depressure valve 30 is provided with a detecting switch 31 for detecting turning of a handle 30a to be operated for opening and closing the manual depressure valve 30 in the valve opening direction. When the handle 30a is turned in the valve opening direction, this detecting switch 31 is switched to ON to output the detecting signal to a control device 16. When the operation for opening the manual depressure valve 30 is detected, the control device 16 closes a cut-off valve 27 to stop the supply of the gas by the gas supplying system.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了在填充操作期间操作设置在分配器单元中的手动降压阀时提高可靠性。 解决方案:在该气体供给装置11中,手动按压阀30配置在供气管路2中。手动减压阀30在进行维护时或通过检测到其他设备的异常生成时,通过手动操作而打开, 并且将气体供给管线24内的气体排出到低压配管47,以降低气体供给配管24的内部压力。手动按压阀30设置有检测开关31,用于检测手柄30a的转动 操作以在阀打开方向上打开和关闭手动按压阀30。 当手柄30a在阀打开方向转动时,该检测开关31被切换到ON,以将检测信号输出到控制装置16.当检测到用于打开手动按压阀30的操作时,控制装置16关闭 切断阀27,停止供气系统供给气体。
    • 8. 发明专利
    • CENTRALIZED SUPPLY SYSTEM FOR KEROSENE
    • JP2002274600A
    • 2002-09-25
    • JP2001076437
    • 2001-03-16
    • MITSUI MINING & SMELTING CO
    • YAMAGISHI KIYOSHI
    • B67D7/04B67D7/08B67D7/70B67D7/78F23K5/02F23K5/04B67D5/04B67D5/08B67D5/52B67D5/60
    • PROBLEM TO BE SOLVED: To provide a centralized supply system for kerosene, wherein possibilities of causing damages to devices and generating kerosene leakage are low, neither tank nor pump, both having a large capacity, is required to be used, the kerosene leakage is easily detected to quickly cope with it when generated, and safety can be improved. SOLUTION: A kerosene supply pipeline for supplying kerosene to a plurality of kerosene users has a common pipe 32 and pipes which are provided to respective floors of a building and are connected to the common pipe 32. The common pipe 32 is connected a kerosene tank 12 for common use through a pump, and the pipe provided to each floor is connected to respective indoor pipe arrangements for a kerosene user through a flow meter for each user. A kerosene tank provided on each floor is interposed between the common pipe 32 and the pipe provided to each floor. A flow meter for checking a flow rate is interposed between bypass pipe passages provided to the common pipe 32. The common pipe 32 has a first valve 1 which is interposed between portions where respective ends of the bypass pipe passages are connected to the common pipe 32, and a second valve is interposed between the kerosene tank provided on each floor and the common pipe 32. The on-off operation of each of the first and second valves is controlled by a main CPU on a pump control board.