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    • 1. 发明授权
    • Combustion heater
    • 燃烧加热器
    • US09395079B2
    • 2016-07-19
    • US13878628
    • 2011-11-04
    • Kimiyoshi SatohHidenari BabaMasao AiharaToshiyuki SudaToshiro Fujimori
    • Kimiyoshi SatohHidenari BabaMasao AiharaToshiyuki SudaToshiro Fujimori
    • F23D14/12F23D3/00F23D14/66
    • F23D14/12F23C3/00F23D3/00F23D14/66F23D2211/00F23D2213/00F23D2900/00003F23D2900/14001Y02E20/348
    • Provided is a combustion heater (100), which includes a heating plate (118), a layout plate (120) disposed opposite to the heating plate, an annular outer circumferential wall (122) interposed between the heating plate and the layout plate, clipping parts (136) configured to sandwich the heating plate, the layout plate, and the outer circumferential wall so that at least one of the heating plate and the layout plate is allowed to expand in an extending direction thereof, a partition plate (124) disposed between the heating plate and the layout plate, a combustion chamber (126) disposed inside the outer circumferential wall along the outer circumferential wall, an inflow passage (128) configured to flow fuel gas into the combustion chamber using the layout plate and the partition plate as a lateral wall thereof, and an outflow passage (130) configured to discharge exhaust gas from the combustion chamber to an outside using the heating plate and the partition plate as a lateral wall thereof, and to preheat the fuel gas using heat of the exhaust gas via the partition plate. According to the combustion heater, thermal fatigue caused by repetition of heating and cooling can be suppressed.
    • 提供一种燃烧加热器(100),其包括加热板(118),与加热板相对设置的布置板(120),插入在加热板和布局板之间的环形外周壁(122) 配置成夹着加热板,布局板和外周壁的部分(136),使得允许加热板和布局板中的至少一个沿其延伸方向膨胀;设置有隔板(124) 在所述加热板和所述布置板之间,沿着所述外周壁设置在所述外周壁内的燃烧室(126),流入通路(128),其使用所述布置板和所述隔板将燃料气体流入所述燃烧室 作为其侧壁,以及流出通道(130),其构造成使用加热板和隔板将废气从燃烧室排出到外部,作为侧壁 并且利用排气的热量通过隔板预热燃料气体。 根据燃烧加热器,可以抑制重复加热和冷却引起的热疲劳。
    • 3. 发明申请
    • HEATING FURNACE AND CONTINUOUS HEATING FURNACE
    • 加热炉和连续加热炉
    • US20140170582A1
    • 2014-06-19
    • US14183962
    • 2014-02-19
    • Kimiyoshi SATOHToshiyuki SUDAToshiro FUJIMORIMasao AIHARA
    • Kimiyoshi SATOHToshiyuki SUDAToshiro FUJIMORIMasao AIHARA
    • F27B9/06F23D14/12
    • F27B9/06A21B1/10A21B1/48F23D14/125F27B5/14F27B9/08F27B9/10F27B9/20F27B9/24F27B9/36F27D17/00F27D17/004F27D99/0033F27D99/0035F27D2099/0061
    • A heating furnace includes a target space (212a) in which a burning target is disposed, and a furnace main body (212) that surrounds the target space. The heating furnace includes one or more closed gas heaters having an introduction hole configured to introduce a fuel gas into the main body, a combustion chamber in which the introduced fuel gas is combusted, a discharge section to which an exhaust gas generated by combustion is guided, a radiation surface heated by the exhaust gas flowing through the discharge section or combustion in the combustion chamber and configured to transfer radiant heat to the burning target, and an exhaust hole configured to exhaust the exhaust gas that heats the radiation surface to the outside of the main body, and disposed in the furnace main body, and an exhaust heat transfer section (an insulated pipe (222a)) in communication with the exhaust hole of the closed gas heater and to which the exhaust gas is guided. In addition, the exhaust heat transfer section is installed at any portion in the furnace main body except for a radiation space (212b) formed between the closed gas heater and the burning target disposed in the target space and configured to transfer the radiant heat to the burning target.
    • 加热炉包括设置有燃烧对象物的目标空间(212a)和围绕目标空间的炉主体(212)。 加热炉包括一个或多个封闭式气体加热器,其具有引入燃料气体到主体中的引入孔,引入燃料气体燃烧的燃烧室,引导燃烧产生的排气的排出部 由流过排气部分的废气加热的辐射表面或燃烧室中的燃烧并且被配置成将辐射热传递到燃烧目标;以及排气孔,其被配置为排出将辐射表面加热到外部的废气 主体,并且配置在炉主体中,以及排气传热部(绝热管),与封闭气体加热器的排气孔连通,排气被引导到该废气传热部。 另外,排气传热部安装在炉主体的任意部分,除了形成在被设置在目标空间中的封闭气体加热器和燃烧对象物之间的辐射空间212b之外,还配置了将辐射热传递到 燃烧目标
    • 4. 发明授权
    • Print management method and apparatus with multiple views
    • 具有多重视图的打印管理方法和装置
    • US08593653B2
    • 2013-11-26
    • US11395584
    • 2006-03-31
    • Toshiro FujimoriGeoff W. HarmonRakesh PanditShigenori Matsubara
    • Toshiro FujimoriGeoff W. HarmonRakesh PanditShigenori Matsubara
    • G06K15/00
    • G06F3/1288G06F3/1205G06F3/1207G06F3/1256
    • A method for managing a plurality of pint jobs is implemented in a print job management apparatus connected to printers. The method includes receiving print job, and visually presenting a display screen to a user, the display screen including first, second and third panels for classifying the received print jobs according to processing phase thereof, the first panel being provided for listing print jobs that are awaiting assignment of printers thereto for processing the print jobs, the second panel being provided for listing print jobs that have been assigned to printers and that have not been completed by the assigned printers, the third panel being provided for listing at least one of first and second categories of print jobs, the first category including print jobs that have been completed, the second category including print jobs that have been cancelled.
    • 在连接到打印机的打印作业管理装置中实现用于管理多个品脱作业的方法。 该方法包括接收打印作业,并向用户可视地呈现显示屏幕,显示屏幕包括第一,第二和第三面板,用于根据其处理阶段对接收的打印作业进行分类,第一面板被提供用于列出打印作业 等待分配打印机以处理打印作业,第二面板被提供用于列出已被分配给打印机并且尚未被分配的打印机完成的打印作业,第三面板被提供用于列出第一和第二面板中的至少一个, 第二类打印作业,第一类包括已完成的打印作业,第二类包括已取消的打印作业。
    • 9. 发明授权
    • System for controlling circulatory amount of particles in circulating fluidized bed furnace
    • 循环流化床炉中颗粒循环量控制系统
    • US08292977B2
    • 2012-10-23
    • US12526598
    • 2007-03-02
    • Toshiyuki SudaYoshiaki MatsuzawaToshiro Fujimori
    • Toshiyuki SudaYoshiaki MatsuzawaToshiro Fujimori
    • B01J19/00B01J8/18
    • F27B15/18C10J3/482C10J3/56C10J3/62C10J3/723C10J2300/093C10J2300/0973C10J2300/1606C10J2300/1637C10J2300/1807C10J2300/1853F23C10/10F23C10/32F23C2206/102
    • The invention has its object to arbitrarily adjust an amount of particles to be circulated without changing a flow rate of a gasification agent to thereby enhance gasification efficiency in a fluidized bed gasification furnace.The fluidized bed gasification furnace 107 comprises first and second chambers 113 and 114 in communication with each other in a fluidized bed 105. The hot particles 102 separated in the separator 104 and raw material M are introduced into the first chamber 113. The particles 102 introduced from the first chamber 113 through interior in the fluidized bed 105 to the second chamber 114 are supplied in an overflow manner to the fluidized bed combustion furnace 100. A first pressure controller 121 is provided to control the resultant gas induction means 116 such that the pressure in the first chamber 113 is kept to preset pressure 120; and a second pressure controller 124 is provided to control the exhaust gas induction means 118 such that difference between pressure in the first and second chambers 113 and 114 is equal to the preset differential pressure 123, so that the fluidized bed 105 in the first chamber 113 is controlled in height to control an amount of particles 102 to be circulated.
    • 本发明的目的是任意调节待循环的颗粒的量,而不改变气化剂的流速,从而提高流化床气化炉的气化效率。 流化床气化炉107包括在流化床105中彼此连通的第一和第二室113和114.将在分离器104中分离的热颗粒102和原料M引入第一室113中。引入颗粒102 从第一室113通过流化床105内部到第二室114以溢流方式供给到流化床燃烧炉100.提供第一压力控制器121以控制所得到的气体诱导装置116,使得压力 在第一室113中保持预设压力120; 并且提供第二压力控制器124以控制排气感应装置118,使得第一和第二室113和114中的压力差等于预设压差123,使得第一室113中的流化床105 被控制在高度以控制要循环的颗粒102的量。