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    • 1. 发明专利
    • Vertical pump
    • 垂直泵
    • JP2006299944A
    • 2006-11-02
    • JP2005123261
    • 2005-04-21
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • NAKAKOSHI HIROAKITAKAHASHI KAZUOMASUDA MASAHIROKAWANE HIROSHI
    • F04D29/66F04D13/00F04D29/44
    • PROBLEM TO BE SOLVED: To provide a vertical pump which can be easily set around the pump suction port, and prevents the underwater vortex without the civil engineering work of the pump water-suction tank.
      SOLUTION: The vertical pump is provided with a suction bell-mouth fixed to the suction port end of the vertical pump, a plurality of conical cones projecting a conical bottom on the suction front side axial direction of the inner peripheral suction passage in the suction bell-mouth and having a plurality of through holes, a plate-shaped retainer to retain thereof in the predetermined position, and a ring-like cylindrical bar on the periphery of the annular passage. The vertical pump serves to block the underwater vortex occurred at the bottom or the side wall of a water suction tank so as to prevent the vortex from occurring.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供可以容易地围绕泵吸入口设置的立式泵,并且防止在没有泵抽水箱的土木工程的情况下的水下涡流。 解决方案:立式泵具有固定在垂直泵的吸入口端的吸气口,多个锥形锥体,其在内周吸入通道的吸入前侧轴向上突出圆锥形底部, 所述吸气口具有多个通孔,将其保持在所述预定位置的板状保持器和所述环形通道的周边上的环状圆柱形杆。 垂直泵用于阻挡水箱底部或侧壁发生的水下涡流,以防止涡流发生。 版权所有(C)2007,JPO&INPIT
    • 3. 发明专利
    • Sunlight concentrating and heat-receiving device
    • 太阳能集中和热接收装置
    • JP2011032902A
    • 2011-02-17
    • JP2009178284
    • 2009-07-30
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • MASUDA MASAHIROMIZUTA KEIJITAGAWA MASASHIOSADA TOSHIYUKIMAEDA MANABUKOBAYASHI ICHITA
    • F03G6/00F24S23/70
    • Y02E10/46
    • PROBLEM TO BE SOLVED: To provide a sunlight concentrating and heat-receiving device improving photoconcentrating efficiency by a heat receiver while securing the strength of a support part.
      SOLUTION: The sunlight concentrating and heat-receiving device includes: the photoconcentrating heat receiver 10 letting compressed air flow therein, receiving a sunlight concentrated by a plurality of heliostats 2 and transmitting the same to the compressed air; and the tower part 3 supporting the photoconcentrating heat receiver 10. The tower part 3 is formed with an opening 22 on a light path between the heliostats 2 and the photoconcentrating heat receiver 10 for letting the sunbeam concentrated by the heliostats 2 pass toward the photoconcentrating heat receiver 10 and the opening 22 is opened for entering the sunbeam to the photoconcentrating heat receiver 10 along a north and south direction.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种日光浓缩和热接收装置,其在确保支撑部件的强度的同时通过热接收器提高光集中效率。 太阳光集中和受热装置包括:光收集器10,其中压缩空气流入其中,接收由多个定日镜2集中的太阳光并将其传送到压缩空气; 塔架部分3在定日镜2和光收集热接收器10之间的光路上形成开口22,以使由定日镜2集中的太阳光朝向光中心热量传递 接收器10和开口22打开,以沿着南北方向将光束进入光收发热接收器10。 版权所有(C)2011,JPO&INPIT
    • 5. 发明专利
    • Solar heat receiving instrument
    • 太阳能接收仪表
    • JP2012117396A
    • 2012-06-21
    • JP2010265679
    • 2010-11-29
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KOBAYASHI ICHITATAGAWA MASASHIOSADA TOSHIYUKIAOYAMA KUNIAKIMASUDA MASAHIROOKUBO TAKESHISASAKI SHUHEIFURUYA AKIRAKATO HITOSHINAKATANI HIROKI
    • F03G6/00F01K27/02F24S10/70
    • Y02E10/44Y02E10/46
    • PROBLEM TO BE SOLVED: To avoid the installation of a columnar support for supporting a solar heat receiving instrument on a route from the solar heat receiving instrument to the sunlight inlet thereof, and to simplify a support structure for supporting the vessel and to reduce manufacturing costs.SOLUTION: The solar heat receiving instrument 13 is arranged at the top of a tower 21 erected on the ground in which a compressible working fluid is heated and raised in temperature by heat obtained by the conversion of sunlight collected by a solar heat collector arranged on the ground. The solar heat receiving instrument includes a casing 42 equipped with a bottom plate 46 fixed to the upper surface of the top of the tower 21 and a heat-transmitting pipe unit 43 having heat transmitting pipes 52 accommodated in the casing 42 whereby heat is supplied. Bottom ends of the instruments are connected to the outer circumferential end of the bottom plate 46 to form the casing 42. The sunlight inlet 51 that has a circular shape when seen from the front or an elliptical shape when seen from the front is provided in the center of a plate-shaped member 50 that extends obliquely upward from the outer circumferential end.
    • 要解决的问题:为了避免在从太阳能热接收仪器到太阳光入口的路线上安装用于支撑太阳能热接收仪器的柱状支撑件,并且简化用于支撑容器的支撑结构,并且 降低制造成本。 解决方案:太阳能受热器13布置在竖立在地面上的塔架21的顶部,其中可压缩工作流体通过由太阳能集热器收集的太阳光的转换而获得的热量被加热升温 安排在地面上 太阳能热接收装置包括:壳体42,其配备有固定到塔架21的顶部的上表面的底板46和具有容纳在壳体42中的传热管52的传热管单元43,从而供应热量。 仪器的底端连接到底板46的外圆周端,以形成外壳42.当从前方观察时具有圆形形状的太阳光入口51或从前面观察时呈椭圆形状的太阳光入口51设置在 从外周端向斜上方延伸的板状构件50的中心。 版权所有(C)2012,JPO&INPIT
    • 6. 发明专利
    • Solar heat receiving instrument
    • 太阳能接收仪表
    • JP2012117394A
    • 2012-06-21
    • JP2010265676
    • 2010-11-29
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KOBAYASHI ICHITATAGAWA MASASHIOSADA TOSHIYUKIAOYAMA KUNIAKIMASUDA MASAHIROOKUBO TAKESHISASAKI SHUHEIFURUYA AKIRAKATO HITOSHINAKATANI HIROKI
    • F03G6/00F01K27/02F24S10/70
    • Y02E10/44Y02E10/46
    • PROBLEM TO BE SOLVED: To avoid the installation of a columnar support for supporting a solar heat receiving instrument on a route from the solar heat receiving instrument to the sunlight inlet thereof, and to simplify a support structure for supporting the instrument and to reduce manufacturing costs.SOLUTION: The solar heat receiving instrument 13 is arranged at the top of a tower 21 erected on the ground in which a compressible working fluid is heated and raised in temperature by heat obtained by the conversion of sunlight collected by a solar heat collector arranged on the ground. The solar heat receiving instrument includes modules 41 having the same shapes which are provided with casings 42 equipped with a bottom plate 46 fixed to the upper surface of the top of the tower 21 and a heat-transmitting pipe unit 43 having heat transmitting pipes 52 accommodated in the casing 42 whereby heat is supplied. The modules are arranged back-to-back and bottom ends thereof are connected to the outer circumferential end of the bottom plate 46 in order to form the casing 42. The sunlight inlet 51 that has a circular shape when seen from the front or an elliptical shape when seen from the front is provided in the middle of a plate-shaped member 50 that extends obliquely upward from the outer circumferential end.
    • 要解决的问题:为了避免在从太阳能热接收仪器到其阳光入口的路线上安装用于支撑太阳能热接收仪器的柱状支撑件,并且简化用于支撑仪器的支撑结构,以及 降低制造成本。 解决方案:太阳能受热器13布置在竖立在地面上的塔架21的顶部,其中可压缩工作流体通过由太阳能集热器收集的太阳光的转换而获得的热量被加热升温 安排在地面上 太阳能热接收装置包括具有相同形状的模块41,其具有设置有固定到塔架21的顶部的上表面的底板46的壳体42和容纳有传热管52的传热管单元43 在壳体42内供给热量。 模块背对背地布置,并且其底端连接到底板46的外周端,以形成壳体42.当从前面观察时具有圆形形状的阳光入口51或椭圆形 在从外侧端部倾斜向上延伸的板状构件50的中央设置有从前方观察时的形状。 版权所有(C)2012,JPO&INPIT
    • 10. 发明专利
    • Bearing mechanism and vertical-shaft pump
    • 轴承机构和垂直轴泵
    • JP2006105309A
    • 2006-04-20
    • JP2004294499
    • 2004-10-07
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YAMASHITA KAZUHIKOYAMASHITA KATSUYAOSADA TOSHIYUKIYAMAMOTO YASUHARUTAKAHASHI KAZUOMASUDA MASAHIROKITAMURA TAKESHINAKAKOSHI HIROAKI
    • F16C35/02F16C17/02F16C17/04F16C27/06F16C37/00F16F15/02H02K5/24H02K7/08
    • PROBLEM TO BE SOLVED: To provide a bearing mechanism capable of surely preventing self-excited vibration generated in dry operation with a simple constitution, and improving reliability of a bearing and a vertical-shaft pump as a whole by preventing damage and abnormal abrasion of the bearing.
      SOLUTION: A bearing member 2 is fixed to an inner peripheral face of an approximately cylindrical bearing housing 4 through dampers 3 mounted on its upper and lower both end outer peripheral faces. A space surrounded by the bearing member 2, the dampers 3 and the bearing housing 4 is filled with a heat radiating member 5 for radiating the heat generated in the bearing. By applying the constitution mentioned above, as the dampers 3 absorb impact shock when a pump shaft 1 collides with the bearing member 2 in its rotation, run-out of the pump shaft 1 is prevented. Further as frictional heat generated between the pump shaft 1 and the bearing member 2 is released from a heat radiating member 5 to the external through the bearing housing 4, seizure of the pump shaft 1 and the bearing member 2 is prevented.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够以简单的结构可靠地防止在干燥操作中产生的自激振动并且通过防止损坏和异常来提高轴承和垂直轴泵的可靠性的轴承机构 轴承的磨损。 解决方案:轴承构件2通过安装在其上下两个外周面上的阻尼器3固定到大致圆筒形轴承壳体4的内周面。 由轴承构件2,阻尼器3和轴承壳体4包围的空间填充有用于照射轴承中产生的热量的散热构件5。 通过应用上述结构,当泵轴1在旋转中与轴承构件2碰撞时,当阻尼器3吸收冲击冲击时,防止泵轴1的跳动。 此外,由于在泵轴1和轴承构件2之间产生的摩擦热通过轴承座4从散热构件5释放到外部,因此防止了泵轴1和轴承构件2的卡住。 版权所有(C)2006,JPO&NCIPI