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    • 1. 发明授权
    • Attachment structure for driver seat airbag device
    • 驾驶座安全气囊装置的安装结构
    • US08820781B2
    • 2014-09-02
    • US13819145
    • 2011-07-28
    • Shinsuke SatoMasaru NaritaYasutaka Hiraoka
    • Shinsuke SatoMasaru NaritaYasutaka Hiraoka
    • B60R21/203
    • B60R21/203B60R21/2037
    • An attachment structure for driver seat airbag devices that enables smoother operation of a horn switch. The attachment structure includes: an armature connected to a steering mechanism of the vehicle; and a housing that accommodates the airbag module and that is positioned with respect to the armature. The housing includes positioning pins for implementing relative positioning in XY directions with respect to the armature at a plurality of locations and first openings for implementing positioning in a Z direction at a plurality of locations. The armature is provided with a plurality of second openings through which the positioning pins of the housing are inserted and with a plurality of protrusions that are inserted through the first openings of the housing. The position of Z-direction lower edge sections of the first openings of the housing lies within a range of the depth of the second openings of the armature.
    • 用于驾驶员座椅安全气囊装置的附接结构,其能够使喇叭开关更平稳地操作。 连接结构包括:连接到车辆的转向机构的电枢; 以及容纳安全气囊模块并且相对于电枢定位的壳体。 壳体包括用于在多个位置处相对于电枢在XY方向上实现相对定位的定位销和用于在多个位置处实现在Z方向上的定位的第一开口。 电枢设有多个第二开口,壳体的定位销通过该第二开口插入,并且多个突起被插入穿过壳体的第一开口。 壳体的第一开口的Z方向下边缘部分的位置在衔铁的第二开口的深度的范围内。
    • 2. 发明授权
    • Wind turbine generator
    • 风力发电机组
    • US08632303B2
    • 2014-01-21
    • US13291662
    • 2011-11-08
    • Yu AkashiTakeshi MatsuoShinsuke SatoTakuro Kameda
    • Yu AkashiTakeshi MatsuoShinsuke SatoTakuro Kameda
    • F03D1/04
    • F03D80/60F03D9/28F05B2240/12F05B2240/14Y02E10/721Y02E10/726
    • A wind turbine generator includes a tower, at least one blade, a hub supporting the blade, a nacelle supported by the tower and having a duct part with an intake port and an exhaust port, and a heat exchanger provided in the duct part and cooling a cooling medium for a heat-producing component inside the tower or nacelle. The wall of the nacelle has a double wall structure constituted of an inner wall and an outer wall in an area where the duct part is provided. The inner wall forms a bottom surface of the duct part and has a curved portion which curves inward toward a center line of the nacelle with increasing distance from the hub. The duct part increases in cross-section from a side of the intake port to a side of the exhaust port at least in an area where the curved portion is formed.
    • 一种风力涡轮发电机,包括塔架,至少一个叶片,支撑叶片的轮毂,由塔架支撑并具有带有进气口和排气口的管道部分的机舱,以及设置在管道部分中的热交换器和冷却 用于在塔架或机舱内的发热部件的冷却介质。 机舱的壁具有在设置管道部分的区域中由内壁和外壁构成的双壁结构。 内壁形成管道部分的底面,并且具有弯曲部分,其随着与轮毂的距离增加而朝向机舱的中心线向内弯曲。 管道部分至少在形成弯曲部分的区域中,从进气口侧到排气口侧的横截面增大。
    • 3. 发明授权
    • Power generating apparatus of renewable energy type
    • 可再生能源发电机
    • US08601804B2
    • 2013-12-10
    • US13294065
    • 2011-11-10
    • Yu AkashiTakeshi MatsuoShinsuke SatoTakuro Kameda
    • Yu AkashiTakeshi MatsuoShinsuke SatoTakuro Kameda
    • F16D31/02
    • F03D9/28F03D9/25F03D13/25F03D15/20F03D80/60F05B2260/406Y02E10/721Y02P80/158
    • A power generating apparatus includes a rotating shaft, a hydraulic pump driven by the rotating shaft, a hydraulic motor driven by operating oil supplied from the hydraulic pump; and a generator coupled to the hydraulic motor. The apparatus further includes an oil line connected to the hydraulic pump and the hydraulic motor for circulating the operating oil between the hydraulic pump and the hydraulic motor, an oil cooler connected to the oil line for cooling the operating oil by heat exchange with a cooling medium, a cooling-medium line supplying the cooling medium to the oil cooler; a bypass line diverging from at least one of the oil line and the cooling-medium line and merging into at least one of the oil line and the cooling-medium line to bypass the oil cooler; and a flow regulating valve in at least one of the oil line and the cooling-medium line.
    • 发电装置包括旋转轴,由旋转轴驱动的液压泵,由从液压泵供给的工作油驱动的液压马达; 以及联接到液压马达的发电机。 该装置还包括连接到液压泵的油路和用于在液压泵和液压马达之间循环工作油的液压马达,连接到油管线的油冷却器,用于通过与冷却介质的热交换来冷却工作油 ,将所述冷却介质供给到所述油冷却器的冷却介质管线; 旁路管线从油路和冷却介质管线中的至少一个分支,并汇合到油管线和冷却介质管线中的至少一个旁边以绕过油冷却器; 以及至少一个油管路和冷却介质管路中的流量调节阀。
    • 6. 发明授权
    • Wind turbine for wind power generation
    • 风力发电风力发电机组
    • US08502405B2
    • 2013-08-06
    • US13000642
    • 2010-08-23
    • Shigeto HiraiYasushi OkanoShinsuke Sato
    • Shigeto HiraiYasushi OkanoShinsuke Sato
    • F03D9/00H02P9/04H05K7/20
    • B01D46/0086F03D80/55F03D80/60F05B2260/63F05B2260/64Y02E10/726
    • A wind turbine for wind power generation accommodated a heat-generating device therein is always properly cooled by accurately detecting clogging of a filter. A wind turbine accommodates a heat-generating device and includes a column disposed in an upright position on a foundation, a nacelle disposed on a top end of the column, and a rotor head supported by the nacelle so as to be rotatable about a substantially horizontal axis, and the wind turbine includes an intake which is provided in an outer surface of the wind turbine and through which outside air is taken into the wind turbine to cool the heat-generating device; an exhaust which is provided in the outer surface of the wind turbine and through which air inside the wind turbine is discharged outside the wind turbine; an impurity-removing mechanism disposed in a flow path of air from the intake to the exhaust to remove impurities contained in the outside air; and a control unit for determining the condition of the impurity-removing mechanism by comparing, as a parameter serving as a criterion for determining the condition of the impurity-removing mechanism, latest data obtained while a wind speed outside the wind turbine is substantially stable with reference value data input in advance and serving as a reference.
    • 通过精确检测过滤器的堵塞,总是适当地冷却容纳其中的发热装置的用于风力发电的风力涡轮机。 风力涡轮机容纳发热装置,并且包括设置在基座上的直立位置的列,设置在塔的顶端的机舱和由机舱支撑的转子头,以便可绕大致水平旋转 并且所述风力涡轮机包括设置在所述风力涡轮机的外表面中并且外部空气被引入所述风力涡轮机中以冷却所述发热装置的进气口; 设置在风力涡轮机的外表面中并且风力涡轮机内的空气通过其排出到风力涡轮机外部的排气; 杂质去除机构,其设置在从进气口到排气口的空气流动路径中,以除去包含在外部空气中的杂质; 以及控制单元,用于通过将作为用于确定杂质去除机构的条件的标准的参数作为用于在风力涡轮机外部的风速基本上稳定之后获得的最新数据进行比较来确定杂质去除机构的状态, 参考值数据预先输入并作为参考。
    • 8. 发明申请
    • WIND TURBINE GENERATOR
    • 风力涡轮发电机
    • US20120032448A1
    • 2012-02-09
    • US13242771
    • 2011-09-23
    • Shinsuke SATOTatsuo ISHIGURO
    • Shinsuke SATOTatsuo ISHIGURO
    • H02K9/02
    • F03D80/60F05B2240/912F05B2260/64Y02E10/726Y02E10/728
    • The present invention provides a wind turbine generator, in which a rotor head that rotates by receiving external wind with turbine blades generates power by driving a generator installed inside a nacelle and in which the nacelle is installed at a top end of a tower, wherein an introducing vent that takes the external wind into an internal space in the wind turbine generator is provided at a portion of an outer circumference surface of the tower or the nacelle that receives positive pressure due to the external wind; and an exhaust vent that externally exhausts cooling air in the internal space is provided at a portion of the outer circumference surface of the tower or the nacelle that receives the negative pressure due to the external wind.
    • 本发明提供了一种风力涡轮发电机,其中通过接收具有涡轮叶片的外部风旋转的转子头通过驱动安装在机舱内部的发电机并且其中所述机舱安装在塔架的顶端而产生动力,其中, 将外部风进入风力涡轮发电机的内部空间的导入口设置在由外部风引起的正压力的塔架或机舱的外周面的一部分上; 并且外部排出内部空间中的冷却空气的排气口设置在塔架的外周表面的一部分或由于外部风而承受负压的机舱。
    • 9. 发明授权
    • Wind turbine generator system
    • 风力发电系统
    • US08109814B2
    • 2012-02-07
    • US12377898
    • 2008-10-30
    • Takashi UchinoShinsuke SatoTakatoshi Matsushita
    • Takashi UchinoShinsuke SatoTakatoshi Matsushita
    • H05K5/00F03D9/00
    • F03D80/60F05B2240/14Y02E10/726
    • Provided is a wind turbine generator system that can cool a nacelle interior by ventilation irrespective of the outside air temperature in various installation environments. In a wind turbine generator system in which equipment of drive and electricity generation mechanisms that are coupled to a rotor head provided with wind turbine blades is disposed inside a nacelle, and in which, by driving a ventilation fan provided in the nacelle, outside air introduced from an air inlet provided in a front face of the nacelle is exhausted outside the nacelle from an air outlet that communicates with a fan outlet, to perform ventilation cooling of the interior, a side air inlet is additionally provided in a side face of the nacelle at a position where a negative pressure is generated by air flowing outside the nacelle.
    • 提供了一种风力发电机系统,其可以通过不同的安装环境中的外部空气温度来冷却机舱内部。 在风力发电机系统中,其中连接到设置有风力涡轮机叶片的转子头的驱动和发电机构的设备设置在机舱内部,并且其中通过驱动设置在机舱中的通风扇,引入外部空气 从设置在机舱前面的空气入口从与风扇出口连通的出风口排出到机舱外部,以进行内部的通风冷却,另外在机舱的侧面设置侧空气入口 在空气流过机舱外部产生负压的位置。
    • 10. 发明申请
    • WIND POWER GENERATOR
    • 风力发电机
    • US20110204652A1
    • 2011-08-25
    • US12667408
    • 2009-08-18
    • Shinsuke SatoTatsuya Shiraishi
    • Shinsuke SatoTatsuya Shiraishi
    • F03D9/00
    • F03D80/60F03D80/00F03D80/70F05B2240/14F05B2260/64Y02E10/726
    • A fan cooler of a wind power generator that cools devices disposed in a nacelle (3) has an air intake port (11) formed in a nacelle shell (10) to introduce outside air into the nacelle, an outlet opening (12) provided in the nacelle shell (10) to discharge the air in the nacelle, an exhaust port (14) formed at the outlet of a duct (13) connected to the outlet opening (12) to discharge the air in the nacelle into the atmosphere, and a ventilating fan (15) disposed in the vicinity of the outlet opening (12) in the nacelle to suck outside air through the air intake port (11) and to discharge the air in the nacelle through the exhaust port (14); and a bypass passage (16) for returning part of the air to be discharged through the exhaust port (14) into the nacelle is provided downstream of the ventilating fan (15).
    • 一种风冷发电机的风扇冷却器,其冷却设置在机舱(3)中的设备,具有形成在机舱(10)中的空气进口(11),以将外部空气引入所述机舱内;出口开口(12) 所述机舱壳体(10)排出所述机舱中的空气,形成在与所述出口(12)连接的管道(13)的出口处的排气口(14),以将所述机舱中的空气排放到大气中;以及 设置在所述机舱内的出口(12)附近的通风扇(15),以通过所述进气口吸入外部空气,并且通过所述排气口(14)排出所述机舱中的空气。 并且在通风扇(15)的下游设置有用于将通过排气口(14)排出的空气的一部分返回到机舱中的旁通通路(16)。