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    • 21. 发明专利
    • Fluidized bed device
    • 流化床装置
    • JP2003065504A
    • 2003-03-05
    • JP2001251007
    • 2001-08-22
    • Babcock Hitachi Kkバブコック日立株式会社
    • HOKARI NOBUYUKIIWASE TETSUYA
    • F23C10/18F22B1/02
    • PROBLEM TO BE SOLVED: To prevent repeated stress acting on a measuring end measuring the state inside the bed of a fluidized bed device, and prevent the fatigue failure of the measuring end.
      SOLUTION: In the fluidized bed device (a furnace 1), a seat for inserting the measuring end 27 into a fluidized bed 2 is provided on the sidewall of a structure that does not have an air-dispersing plate 3 under the vertical of an inclined wall, for example, and the gas for fluidity. Bubbles do not pass through the location of the measuring end, or a part of the length of the measuring end passes through a bubble-free zone. Thereby, the repeated stress applied on the measuring end at the time when the bubbles pass through is eliminated or reduced, so as to relieve material fatigue.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了防止在测量流化床装置的床内的状态的测量端上发生反复的应力,并且防止测量端的疲劳失效。 解决方案:在流化床装置(炉1)中,将一个用于将测量端27插入流化床2中的座椅设置在不具有空气分散板3的结构的侧壁上, 例如,墙壁和流动性气体。 气泡不通过测量端的位置,或者测量端的一部分长度通过无气泡区。 因此,消除或减少在气泡通过时施加在测量端上的重复应力,以减轻材料疲劳。
    • 23. 发明专利
    • FLUIDIZED BED DEVICE AND ELECTRIC POWER GENERATING SYSTEM WITH FLUIDIZED BED DEVICE
    • JP2003148707A
    • 2003-05-21
    • JP2001347734
    • 2001-11-13
    • BABCOCK HITACHI KK
    • HOKARI NOBUYUKIOKADA DAISUKE
    • F23C10/28F23C10/18
    • PROBLEM TO BE SOLVED: To detect the bed height of a bed material at the initial packing of the bed material of the fluidized bed device having a fluidized reactor. SOLUTION: A fluidized bed device comprises a fluidized bed vessel 2 which forms a fluidized bed 1 by fluidizing a particulate bed material using a flow gas, a bed material feeding nozzle 5a which feeds a bed material to the body of the fluidized bed vessel 2, a raw material feeding nozzle 6 which feeds raw materials to the body of the fluidized bed vessel 2, a gas feeding nozzle which feeds a flow gas to the bottom of the fluidized bed vessel 2, a secondary raw material nozzle which feeds secondary raw materials reacting with the raw materials to the body of the fluidized bed vessel 2, an discharging nozzle 7 which discharges a gas produced by a reaction from the top of the fluidized bed vessel 2, a dispersing plate 8 installed at the bottom of the bed of the fluidized bed 1 which evenly disperses the flow gas, wherein a plurality of temperature sensors 9a to 9c are installed which detect a temperature at a position higher by a constant height above the top surface of the dispersing plate 8, and a fluidized bed height detecting means 12 which detects the fluidized bed height of the bed material packed on the dispersing plate 8 from the detecting value of the temperature sensors while the flow gas hiving higher temperature than that of the bed material is blown from the gas feeding nozzle.
    • 25. 发明专利
    • Apparatus for reforming heavy oil, gas turbine with heavy oil-reforming apparatus, gas turbine plant with heavy oil-reforming apparatus, and method of reforming heavy oil
    • 用于重油重油的装置,具有重油改装装置的气体涡轮机,具有重油改造装置的燃气轮机,以及重油重油方法
    • JP2007186572A
    • 2007-07-26
    • JP2006004775
    • 2006-01-12
    • Hitachi LtdPetroleum Energy Center株式会社日立製作所財団法人石油産業活性化センター
    • NISHIDA KOJIHAYASHI AKINORIHOKARI NOBUYUKIYOKOTA OSAMUTAKAHASHI HIROKAZUKOKUBO SHINSUKEINAGE SHINICHI
    • C10G31/08F02C3/24F02C7/224
    • PROBLEM TO BE SOLVED: To provide an apparatus for reforming heavy oil which can prevent generation of coking in a reformer, has improved collection rate of reformed fuel generated from heavy oil, a gas turbine plant having a reformer of heavy oil.
      SOLUTION: The reforming apparatus comprises a plurality of fuel reforming systems equipped with a reformer 13 that generates a reformed fuel by reforming reaction and by heating/pressurizing mixed fluid 11 of heavy oil 1 and water 8; a heavy oil supplying system that supplies the heavy oil 1 to the plurality of fuel reforming systems; a first control valve 30 that is arranged in the heavy oil supplying system and controls a flow volume of the heavy oil 1; a water supply system that supplies the water 8 to a plurality of the fuel reforming systems: and a second control valve 31 that is arranged in the water supplying system and controls the water flow volume; wherein the first control valve 30 and the second control valve 31 are designed to control the flow volume in accordance with the temperature of the mixed fluid 11 of the heavy oil 1 and the water 8 that flow in the upper stream of the fuel reforming system of each reformer 13.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:提供一种可以防止在重整器中产生焦化的重油重整装置,具有提高重油产生的重整燃料的收集率,具有重油的重整器的燃气轮机装置。 解决方案:重整装置包括多个燃料重整系统,其配备有通过重整反应产生重整燃料并通过加热/加压重油1和水8的混合流体11的重整器13; 重油供应系统,其将重油1供应到多个燃料重整系统; 第一控制阀30,布置在重油供应系统中并控制重油1的流量; 供水系统,其将水8供应到多个燃料重整系统;以及第二控制阀31,其布置在供水系统中并控制水流量; 其中第一控制阀30和第二控制阀31被设计成根据重油1的混合流体11和在燃料重整系统的上游流中的水8的温度来控制流量 每个重组者13.版权所有(C)2007,JPO&INPIT
    • 28. 发明专利
    • Power generating facility, gas turbine power generating facility, reformed fuel supplying method for power generating facility
    • 发电设备,燃气轮机发电设备,发电设备改造燃料供应方法
    • JP2006312917A
    • 2006-11-16
    • JP2005136470
    • 2005-05-09
    • Hitachi Ltd株式会社日立製作所
    • YOKOTA OSAMUINAGE SHINICHINISHIDA KOJIHOKARI NOBUYUKIHAYASHI AKINORITAKAHASHI HIROKAZUKOKUBO SHINSUKE
    • F02C3/24C10G31/06C10G31/08F02C7/22
    • PROBLEM TO BE SOLVED: To provide a power generating facility, a gas turbine power generating facility, and a reformed fuel supplying method for the power generating facility, which lower a heat resistance temperature of a supply piping system for liquid reformed fuel, and thereby reduce its components cost. SOLUTION: The power generating facility operated by the reformed fuel produced by reforming heavy oil is provided with: a fuel reformer 1 mixing the heavy oil with high temperature and high pressure water to reform it; a pressure reducer 16 for pressure reduction of the reformed fuel reformed by the fuel reformer 1; a first heat exchanger 17 carrying out heat exchange between the reformed fuel reduced in pressure by the pressure reducer and, for example, low temperature steam; a gas-liquid separator 18 carrying out gas-liquid separation of the reformed fuel subjected to heat exchange by the first heat exchanger 17; a second heat exchanger 25 carrying out heat exchange between the liquid reformed gas separated by the gas-liquid separator 18 and, for example, cooling water; a combustor 3 carrying out combustion of the liquid reformed fuel subjected to heat exchange by the second heat exchanger 25 along with compressed air from a compressor 2; a gas turbine 4 driven by combustion gas generated by the combustor 3; and a generator 5 carrying out power generation by driving of the gas turbine 4. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:为了提供降低液体重整燃料的供给管道系统的耐热温度的发电设备的发电设备,燃气轮机发电设备和重整燃料供给方法, 从而降低其部件成本。 解决方案:由重油生产的改性燃料运行的发电设备设有:将重油与高温高压水混合以重新构成的燃料重整器1; 用于减压由燃料重整器1重整的重整燃料的减压器16; 第一热交换器17,通过减压器在减压的重整燃料和例如低温蒸汽之间进行热交换; 对通过第一热交换器17进行热交换的重整燃料进行气液分离的气液分离器18; 在由气液分离器18分离的液体重整气体和例如冷却水之间进行热交换的第二热交换器25; 通过第二热交换器25与来自压缩机2的压缩空气进行热交换的液体重整燃料的燃烧的燃烧器3; 由燃烧器3产生的燃烧气体驱动的燃气轮机4; 以及通过驱动燃气轮机4进行发电的发电机5.版权所有(C)2007,JPO&INPIT
    • 29. 发明专利
    • Heavy oil reforming equipment and reforming method, gas turbine generating equipment, and oil refining equipment
    • 重油改造设备和改造方法,气体发电设备和油精设备
    • JP2006022134A
    • 2006-01-26
    • JP2004198895
    • 2004-07-06
    • Hitachi LtdPetroleum Energy Center株式会社日立製作所財団法人石油産業活性化センター
    • HOKARI NOBUYUKIINAGE SHINICHINISHIDA KOJIYOKOTA OSAMUTAKAHASHI HIROKAZUYAMAGISHI MASAHIKOHAYASHI AKINORI
    • C10G9/36F02M27/02
    • Y02T10/126
    • PROBLEM TO BE SOLVED: To make it possible to produce a steam necessary for reforming heavy oil neither too much nor too little, when producing a reformed oil by reacting a heavy oil by mixing with a high temperature and high pressure steam and cracking it, and burning a heavy residuum generated at that time to produce the steam necessary for reformation by itself.
      SOLUTION: By controlling the operation pressure of a heavy oil reformer, the generation ratio of the heavy residuum to the supply amount of the heavy oil as a raw material or the generation amount of the reformed oil can be controlled. Thereby, in heavy oil reforming equipment of a steam self-producing type which burns the heavy residuum generated at the time of producing the reformed oil in the heavy oil reformer at a boiler to produce steam, and reforms the heavy oil by using this steam, if making the generation ratio of the heavy residuum adjusted by controlling the operation pressure of the heavy oil reformer, the amount of steam necessary to reform the heavy oil can be produced neither too much nor too little.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了能够通过使重油与高温高压蒸汽混合并使裂解反应生成重油,生产重油重整所需的蒸汽也不会太大,也不太少 并且燃烧当时产生的沉重的残渣,以产生自身需要改造的蒸汽。 解决方案:通过控制重质油重整器的操作压力,可以控制重残渣与重油作为原料的供给量的产生比或重整油的产生量。 因此,在蒸汽自生型的重油改性设备中,在锅炉中重燃油重整器中生产重油所产生的重残渣产生蒸汽,并通过使用该蒸汽改造重质油, 如果通过控制重质油重整器的操作压力来调节重质残渣的产生比例,那么重油重整所需的蒸汽量也不会太大也不太少。 版权所有(C)2006,JPO&NCIPI