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    • 1. 发明专利
    • Flow velocity and grain size measurement method, and system therefor
    • 流动速度和粒度测量方法及其系统
    • JP2013029423A
    • 2013-02-07
    • JP2011165732
    • 2011-07-28
    • Toshiba Corp株式会社東芝
    • UCHIDA TATSURO
    • G01N15/02G01P5/20
    • PROBLEM TO BE SOLVED: To provide a flow velocity and grain size measurement method that simultaneously and highly accurately measure a grain size and a flow velocity without any increase in cost, and a system therefor.SOLUTION: A flow velocity and grain size measurement system includes: a first measurement device which measures the flow velocity of a first phase associated with a working fluid flowing in an object to be measurement; a second measurement device which measures the flow velocity of a second phase associated with particles in the working fluid flowing in the object to be measured; and an arithmetic device which finds a correlation equation holding for the flow velocity of the first phase, the flow velocity of the second phase, and the particle size of the particles from the flow velocity of the first phase and the flow velocity of the second phase measured by the first and second measurement devices, and substitutes the measured flow velocity of the first phase and the flow velocity of the second phase in the correlation equation to calculate the particle size of the particles flowing in the object to be measured.
    • 要解决的问题:提供一种同时且高精度地测量晶粒尺寸和流速而不增加成本的流速和粒度测量方法及其系统。 解决方案:流速和粒度测量系统包括:第一测量装置,其测量与要测量的物体中流动的工作流体相关联的第一相的流速; 第二测量装置,其测量与待测量物体中流动的工作流体中的颗粒相关联的第二相的流速; 以及算术装置,其从第一相的流速和第二相的流速求出用于第一相的流速,第二相的流速和粒子的粒径的相关方程, 通过第一和第二测量装置测量,并且在相关方程中代替测量的第一相的流速和第二相的流速来计算在待测量物体中流动的颗粒的粒度。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • System for measuring fluid velocity
    • 用于测量流体速度的系统
    • JP2010243197A
    • 2010-10-28
    • JP2009089177
    • 2009-04-01
    • Toshiba Corp株式会社東芝
    • UCHIDA TATSURONIIZEKI YOSHIKI
    • G01P5/20
    • PROBLEM TO BE SOLVED: To provide a system for measuring a fluid velocity capable of measuring the velocity of a fluid accurately and quickly.
      SOLUTION: This system 1 for measuring a flow velocity includes a laser light oscillation part 2 which oscillates laser light 3, a laser sheet light forming part 4 which converts the laser light 3 into laser sheet light 5 and radiates it into a measured fluid, and a borescope 7 which observes an image 6 of an object to be irradiated made to appear in the measured fluid by the laser sheet light 5. A camera 8 for PIV which picks up the observed image of the object to be irradiated and transforms it into irradiated body image data is connected to the borescope 7. The laser sheet light forming part 4 and the borescope are held and maintained partially at least in a probe 9 extended to the measured fluid side.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于测量能够精确而快速地测量流体速度的流体速度的系统。 解决方案:用于测量流速的系统1包括激光3的激光振荡部分2,将激光3转换成激光板光5的激光片光形成部分4,并将其照射到测量 流体和管腔7,其通过激光板光5观察要被照射的被摄体的图像6出现在测量的流体中。用于PIV的照相机8拾取待照射物体的观察图像并转换 被照射的身体图像数据连接到管道镜7.激光片光形成部分4和管道镜部分至少保持并保持在延伸到测量的流体侧的探针9中。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Steam turbine
    • 汽轮机
    • JP2009103099A
    • 2009-05-14
    • JP2007277738
    • 2007-10-25
    • Toshiba Corp株式会社東芝
    • SAEKI YUSHIIWAI YASUNORIOISHI TSUTOMUUCHIDA TATSURO
    • F01D25/30
    • PROBLEM TO BE SOLVED: To provide a high performance steam turbine by reducing a pressure loss in a downward exhaust type low pressure exhaust chamber without increasing the size of the downward exhaust type low pressure exhaust chamber.
      SOLUTION: In the steam turbine 40 of the invention, a turbine casing 4 is formed in a double structure of an outer casing 10 and an inner casing 9, an annular diffuser 8 is composed of a steam guide 11, a bearing cone 7 and so forth on an outlet side of final stage blades of the inner casing and the low pressure exhaust chamber enclosed by the outer casing 10 and the bearing cone 7 is formed on an outlet side of the annular diffuser 8. The steam guide 11 has a fixed steam guide 12 and a first movable steam guide 13 which is provided on the outlet side with respect to the fixed steam guide 12 and is axially movable relatively to the fixed steam guide 12. A second movable steam guide 14 axially movable relatively to the fixed steam guide 12 is provided on the outlet side with respect to the first movable steam guide 13.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:通过减小向下排气型低压排气室中的压力损失而不增加向下排气型低压排气室的尺寸来提供高性能蒸汽轮机。 解决方案:在本发明的蒸汽轮机40中,涡轮壳体4形成为外壳10和内壳9的双重结构,环形扩散器8由蒸汽导管11,轴承锥体 7等在内壳的末级叶片的出口侧和由外壳10包围的低压排气室和轴承锥体7形成在环形扩散器8的出口侧。蒸汽导管11具有 固定的蒸汽引导件12和第一可动蒸汽引导件13,其相对于固定蒸汽引导件12设置在出口侧,并且可相对于固定蒸汽引导件12轴向移动。第二可移动蒸汽引导件14可相对于 固定式蒸汽导引件12相对于第一可移动蒸汽导管13在出口侧设置。版权所有(C)2009,JPO&INPIT