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    • 4. 发明申请
    • GAS TURBINE
    • 燃气轮机
    • US20100313567A1
    • 2010-12-16
    • US12866419
    • 2008-11-20
    • Sosuke NakamuraKeisuke MatsuyamaTakashi HiyamaYasuro SakamotoKaoru Sakata
    • Sosuke NakamuraKeisuke MatsuyamaTakashi HiyamaYasuro SakamotoKaoru Sakata
    • F02C3/00
    • F01D9/023F01D5/142F01D9/041F05D2210/30F05D2210/40F05D2220/3212
    • In a gas turbine that generates rotational power by supplying fuel to compressed air compressed by a compressor and burning the fuel in a combustor and supplying resultant combustion gas to a turbine, a circumferential distance starting from a leading edge of a turbine first stage nozzle toward a trailing edge side of the first stage nozzle and ending at center of transition pieces of such combustors that are adjacent in a circumferential direction is set relative to a circumferential pitch of such first stage nozzles within a range of 0.05≦S/P≦0.15, and an axial distance between a leading edge of the first stage nozzle and a transition piece rear end of the combustor is set relative to the circumferential pitch of the first stage nozzles within a range of 0.00≦L/P≦0.13. By improving the relative position of a transition piece of the combustor and the first stage nozzle, both suppression of inner pressure fluctuations of the combustor and enhancement in aerodynamic efficiency can be achieved.
    • 在燃气轮机中,通过向由压缩机压缩的压缩空气供给燃料并燃烧燃烧器中的燃料并将合成的燃烧气体供给到涡轮机而产生旋转动力,从涡轮机第一级喷嘴的前缘朝向 第一级喷嘴的后缘侧并且在这样的燃烧器的周向相邻的过渡件的中心处终止,相对于这种第一级喷嘴的周向间距设定在0.05< NlE; S / P≦̸ 0.15的范围内, 并且在第一级喷嘴的前缘与燃烧器的过渡件后端之间的轴向距离相对于第一级喷嘴的周向间距设定在0.00& llE; L / P≦̸ 0.13的范围内。 通过改善燃烧器和第一级喷嘴的过渡件的相对位置,可以实现燃烧器的内部压力波动的抑制和空气动力学效率的提高。
    • 9. 发明申请
    • Rear Projection-Type Multi-Picture Display Device and Collective Screen, Optical Fiber for Collective Screen, and Flat Optical Fiber That are Used for the Display Device
    • 后投影式多画面显示装置及集体屏幕,集体屏幕用光纤,平面光纤用于显示装置
    • US20080012790A1
    • 2008-01-17
    • US10586113
    • 2005-01-13
    • Keisuke Matsuyama
    • Keisuke Matsuyama
    • G09G5/00
    • G03B21/62
    • A rear projection multi-screen display device for preventing boundary lines from appearing on a larger screen when images are projected from multiple projectors onto screens to thereby form the large screen. The rear projection multi-screen display device 10 includes projectors 12 and a collective screen 16. The collective screen 16 includes short unit screens 18 and long unit screens 20, which are different in length. The projectors 12 are the same in number as the short unit screens 18 and long unit screens 20, and disposed to project an optical image onto their rear end surfaces or optical image input faces. Each of the unit screens 18 and 20 is provided with multiple optical fibers 28 which have the same length in the range of 5 mm to 100 cm and are integrally joined together so that their front ends and rear ends are aligned substantially in radial contact with each other. The short unit screens 18 and the long unit screens 20 are disposed in a staggered arrangement when viewed from their front, and their optical image output faces 18A and 20A are disposed adjacent to each other across the collective optical image output face 16A.
    • 一种背投多屏显示装置,用于当将图像从多个投影仪投影到屏幕上以防止边界线出现在较大的屏幕上,从而形成大屏幕。 背投式多画面显示装置10包括投影仪12和集体画面16。 集体屏幕16包括长度不同的短单元屏幕18和长单元屏幕20。 投射器12的数量与短单元屏幕18和长单元屏幕20相同,并且设置成将光学图像投影到其后端表面或光学图像输入面上。 单元屏幕18和20中的每一个设置有多个光纤28,其具有在5mm至100cm范围内的相同长度并且整体地接合在一起,使得其前端和后端大致与每个径向接触地排列 其他。 短单元屏幕18和长单元屏幕20从其前方观察时以交错布置布置,并且它们的光学图像输出面18A和20A在整个光学图像输出面16A上彼此相邻地布置。
    • 10. 发明授权
    • Measuring instrument of the pressure in a combustor
    • 测量燃烧室压力的仪器
    • US06880391B2
    • 2005-04-19
    • US10214204
    • 2002-08-08
    • Keisuke MatsuyamaKatsunori Tanaka
    • Keisuke MatsuyamaKatsunori Tanaka
    • F01D17/08G01L19/00G01L19/06G01M15/00
    • G01L19/0609F01D17/08G01L19/0007
    • An instrument for measuring the pressure in a combustor having a pressure conduit inserted into the combustor, a pressure sensor for measuring the pressure in the combustor provided at a base end side of the pressure conduit, and a damping tube for absorbing a resonance produced in the pressure conduit in accordance with an acoustic eigenvalue of the pressure conduit. The damping tube is provided at the base end side of the conduit, in which the pressure sensor is located at a position where a temperature is elevated by heat from the combustor to a temperature equal to or above a boiling point of water at a concerned gas pressure. The damping tube is wound around the pressure sensor or pressure conduit (including the outer and inner surface of the conduit), and furthermore, heat-resisting, sound-absorbing material is provided in the pressure conduit.
    • 一种用于测量燃烧器中的压力的​​仪器,其具有插入到燃烧器中的压力管道,用于测量设置在压力管道的基端侧的燃烧器中的压力的​​压力传感器,以及用于吸收在该压力管道中产生的共振的阻尼管 压力导管根据压力导管的声学特征值。 阻尼管设置在导管的基端侧,压力传感器位于其中温度由燃烧器的热量升高至等于或高于有关气体的水沸点的温度的位置 压力。 阻尼管卷绕在压力传感器或压力导管(包括导管的外表面和内表面)上,此外,在压力导管中提供耐热吸声材料。