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    • 3. 发明专利
    • Hydrogen gas generator and submersible using the same
    • 氢气发生器和不可使用的气体发生器
    • JP2014162664A
    • 2014-09-08
    • JP2013032990
    • 2013-02-22
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YOKOYAMA KAZUHISAYAMAMOTO HIROYUKITANI TOSHIHIROSUGIHARA KOKIMORIMOTO YUJI
    • C01B3/06B63G8/00
    • Y02E60/36
    • PROBLEM TO BE SOLVED: To provide a hydrogen gas generator capable of optimally adjusting the quantity of a generated hydrogen gas, even in a case where the pressure variation magnitude outside an enclosed space is great, despite being furnished with pressure equalizing vessels.SOLUTION: Pumps 23a and 25a and on/off valves 23b and 25b for adjusting the respective volumes of a raw ingredient slurry 1 and reaction water 2 fed into a reaction tank 22; a pump 27a and an on/off valve 27b for adjusting the discharge volume of an effluent 5 discharged from the reaction tank; a pressure gauge 22a for measuring the pressure within the reaction tank; a liquid surface detector 22b for detecting the liquid surface of a mixture 3 of the reaction water and the slurry within the reaction tank; a pressure gauge 31 for measuring the pressure outside an enclosed space; and a controller 30 for controlling the pumps and the on/off valves based on data measured respectively by the pressure gauges and the liquid surface detector are furnished. Tanks 24, 26, and 28 storing the raw ingredient slurry 1, the reaction water 2, and the effluent 5 are pressure equalizing vessels for pressure equalization with the pressure outside the enclosed space.
    • 要解决的问题:即使在密封空间外的压力变化幅度大的情况下,即使配备有均压容器,也能够提供能够最佳地调节所产生的氢气的量的氢气发生器。解决方案:泵 23a和25a以及用于调节进料到反应槽22中的原料浆料1和反应水2的各自体积的开/关阀23b和25b; 用于调节从反应罐排出的流出物5的排出量的泵27a和开/关阀27b; 用于测量反应罐内的压力的压力计22a; 用于检测反应水的混合物3和反应罐内的浆料的液面的液面检测器22b; 用于测量封闭空间外的压力的压力计31; 并且提供了用于基于分别由压力计和液面检测器测量的数据来控制泵和开/关阀的控制器30。 储存原料浆料1,反应水2和流出物5的储罐24,26和28是压缩平衡容器,用于在封闭空间外压力均衡。
    • 4. 发明专利
    • Turbulence generation device
    • 涡轮发电装置
    • JP2013130408A
    • 2013-07-04
    • JP2011278279
    • 2011-12-20
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YAMAMOTO HIROYUKIMATSUURA MASAAKIMIZUKAMI SATOSHI
    • G01M9/04
    • PROBLEM TO BE SOLVED: To provide a turbulence generation device capable of increasing variations of air duct test conditions by changing the size of a turbulence and preventing the size of the turbulence from becoming uniform on a plane which is perpendicular to a flowing direction of a fluid.SOLUTION: A turbulence generation device 1 is disposed in an air duct body 3 in which a fluid is circulated, configured by combining longitudinal rod bodies 4 and lateral rod bodies 5 in a grid shape and provided for generating a turbulence inside the air duct body 3 of the fluid. In the turbulence generation device 1, the longitudinal rod body 4 is formed in such a manner that at least a part of a cross-sectional shape orthogonal to a direction of an axis J1 becomes non-circular, and provided so as to be rotatable around the axis J1.
    • 要解决的问题:提供一种湍流发生装置,能够通过改变湍流的大小并防止湍流尺寸在垂直于流体的流动方向的平面上变得均匀而增加空气管道测试条件的变化 解决方案:湍流产生装置1设置在流体循环的空气管道体3中,通过将纵向杆体4和横向杆体5组合成格子形状并被设置成在空气管道本体内产生湍流 3的流体。 在湍流产生装置1中,纵杆体4形成为使得与轴线J1的方向正交的横截面形状的至少一部分成为非圆形,并且设置成能够围绕 轴J1。
    • 5. 发明专利
    • High-temperature member for gas turbine
    • 用于气体涡轮机的高温部件
    • JP2012087809A
    • 2012-05-10
    • JP2012023393
    • 2012-02-06
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • UECHI HIDEYUKIKAWADA YUTAKAMATSUURA MASAAKISUENAGA KIYOSHISUGISHITA HIDEAKIYAMAMOTO HIROYUKIHANEDA SATORU
    • F01D5/18F01D9/02F02C7/18
    • F01D5/186F01D9/065F05D2240/11F05D2240/81F05D2250/711F05D2250/712F05D2250/713F05D2250/75F05D2260/202F05D2260/204F23R3/002F23R2900/03042
    • PROBLEM TO BE SOLVED: To provide a high-temperature member for a gas turbine which can uniformize a thickness of a membrane of a coolant formed on a surface of the high-temperature member for a gas turbine in the crosswise direction, and is equipped with film cooling holes which can exclude unevenness of film cooling.SOLUTION: In the high-temperature member 170 for a gas turbine, the membrane of the coolant is formed on a surface 10a by the coolant blown off from a plurality of film cooling holes 174 in which heat transfer from a high-temperature gas is suppressed. The high-temperature member is configured so that two flow paths serving as the inflow part 175 of the film cooling holes 174 are provided at separate positions, an angle formed by central axes of these flow paths and a central axis of the flow path in the outflow part 176 of the film cooling holes 174 becomes an obtuse angle, and an angle formed by the central axis of the flow path in the outflow part 176 of the film cooling holes 174 and the surface 10a becomes an acute angle.
    • 要解决的问题:提供一种用于燃气轮机的高温部件,该高温部件能够使形成在燃气轮机的高温部件的表面上的冷却剂的膜的横向厚度均匀化,以及 配有可以排除薄膜冷却不均匀的薄膜冷却孔。 解决方案:在用于燃气轮机的高温构件170中,通过从多个膜冷却孔174吹出的冷却剂在表面10a上形成冷却剂膜,其中从多个膜冷却孔174中传递高温 气体被压制 高温部件被构造为使得用作薄膜冷却孔174的流入部分175的两个流动路径设置在分开的位置,由这些流动路径的中心轴线形成的角度和流动路径的中心轴线 薄膜冷却孔174的流出部分176变成钝角,并且由薄膜冷却孔174的流出部分176中的流动路径的中心轴线和表面10a形成的角度成为锐角。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • CHEMICAL CLEANING METHOD FOR COMBINED BOILER
    • JPS5798799A
    • 1982-06-19
    • JP17423580
    • 1980-12-10
    • MITSUBISHI HEAVY IND LTD
    • YAMADA NOBUHIKONIIMURA AKIHIROYAMAMOTO HIROYUKI
    • F22B37/52B08B9/00F28G9/00
    • PURPOSE:To eliminate a temporary circulation pump by a method wherein a distribution pipe and a water feeding pipe are communicated by a temporary pipe in a combined boiler, a boiler circulation pump is operated, acid liquid is fed to the furnace wall and the coal saver to perform a cleaning operation. CONSTITUTION:Chemical cleaning seat is arranged at a man-hole of a distribution pipe 11, it is connected to the acid cleaning seat 6 of the water feeding pipe 7 through a temprary pipe 118, and to the pipe 118 is connected the blow pipe 131. At first, the feeding of the water is performed by a de-saltizing pump in a system ranging from the condensor 103 to the boiler circulation pipe 14. Under a heated circulation, the water feeding is performed through a circulation passag starting from the coal saver 8 to the coal saver via boiler circulation pump 10, and a circulation passage starting from the distributed pipe 11 to the mixing pipe 9 via walls 12, 13. Then, the feeding of chemicals is performed such that it is fed into a space between the distributed pipe 9 and the pump 10 from the chemical feeding pump 32 via temporary distributing pipe 129 and then pure water is fed to provide a pressurized condition in advance in order to prevent an immersion of acid into the over-heaters 27, 28.
    • 8. 发明专利
    • Production planning support device, method and program
    • 生产计划支持设备,方法和程序
    • JP2011242917A
    • 2011-12-01
    • JP2010113026
    • 2010-05-17
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YAMAMOTO HIROYUKI
    • G05B19/418G06Q50/00G06Q50/04
    • Y02P90/30
    • PROBLEM TO BE SOLVED: To efficiently cope with the fluctuation of the order quantity of products.SOLUTION: In the case of virtually moving a virtual train having at least one virtual seat which is a shipping unit of the products and having at least one virtual vehicle which is a manufacture unit of the products in a predetermined order to a virtual terminal 5 which is the process of a stage where the production of the product is completed and it is in a shipping ready state while passing through each of a plurality of virtual stations 4a, 4b and 4c which are the processes of the production stage of the product, a production planning support device comprises: a shipping instruction part for preferentially shipping the product equivalent to the seat for which it has been long since arriving at a virtual switchyard 6 for keeping products not to be shipped in the terminal 5 on the basis of order information for which a customer and order taking information are made to correspond; and an inventory management part for instructing production stop for the seats not to be shipped to the process on the upstream side when the number of the seats not to be shipped in the switchyard 6 exceeds a first threshold.
    • 要解决的问题:有效应对产品订单数量的波动。 解决方案:在虚拟移动具有至少一个作为产品的运输单元的虚拟座椅的虚拟列车的情况下,并且具有作为产品的制造单元的至少一个虚拟车辆以预定顺序到虚拟车厢 终端5是产品生产完成的阶段的过程,并且在通过作为生产阶段的过程的多个虚拟站4a,4b和4c中的每一个的处于运送就绪状态的过程中 产品,生产计划支持设备包括:运送指令部件,用于优先运送相当于已经到达虚拟交换机6的虚拟交换机6的座位的产品,以便在不在终端5中运输的产品基于 使客户和订单获取信息的订单信息对应; 以及库存管理部件,用于指示当不要在开关站6中运输的座位数量超过第一阈值时,不会运送到上游侧的处理的座位的生产停止。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Filtering apparatus, its cleaning method, and detoxifying system equipped with the same
    • 过滤设备,其清洗方法和与其相同的脱氧系统
    • JP2008212852A
    • 2008-09-18
    • JP2007055064
    • 2007-03-06
    • Fuji Filter Kogyo KkMitsubishi Heavy Ind Ltd三菱重工業株式会社富士フィルター工業株式会社
    • HORIZOE KOJIASANO MASAMICHIKAWASAKI YUSUKEABE EISHINYAMAMOTO HIROYUKI
    • B01D33/06B01D24/46B01D33/44B01D33/58B01D36/00C02F1/46
    • PROBLEM TO BE SOLVED: To provide a filtering apparatus enabling the stable operation by smoothly draining a cleaning liquid upon cleaning a filter element without remaining inside a filter housing to prevent solid substances having small gravity from remaining inside the filter housing and prevent these solid substances from adhering to the filter element, and a liquid detoxifying system equipped with the filtering apparatus.
      SOLUTION: The filtering apparatus is constituted in that an untreated liquid is introduced to an outside chamber formed outside the filter element, and the solid substances is filtered through the filter element, thereafter the liquid is flown out to the inside chamber of the filter element. The apparatus is provided with ejection nozzles for blowing the cleaning liquid for cleaning the filter element on the outer peripheral surface of the filter element and a plurality of drain discharge ports along the height direction of the filter element to open the respective drain discharge ports facing the outer peripheral surface of the filter element, and the outlet side of the drain discharge port is connected to a drain pipe with an on-off valve.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种过滤装置,其能够通过在清洁过滤元件的同时平稳地排出清洁液而能够进行稳定的操作,而不会残留在过滤器壳体内,以防止具有小重力的固体物质残留在过滤器壳体内并防止这些 粘附于过滤元件的固体物质,以及配备有过滤装置的液体解毒系统。 解决方案:过滤装置的结构是将未处理的液体引入到形成在过滤元件外部的外部室,并且固体物质通过过滤元件过滤,然后液体流出到内部室 过滤元件 该设备设置有用于吹扫清洁液体的喷嘴,用于清洁过滤元件的外周面上的过滤元件,以及沿着过滤元件的高度方向的多个排出口,以打开面向 过滤元件的外周面,排水口的出口侧与具有开关阀的排水管连接。 版权所有(C)2008,JPO&INPIT