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    • 1. 发明授权
    • Under-floor lifting jack for high-speed electric multiple unit trainset
    • 用于高速电动多单元列车的地板下起升插座
    • US09045150B2
    • 2015-06-02
    • US13139288
    • 2010-08-19
    • Yinghao LiGuangdan LiuGuizhong YuAnshu LvYanlin LiZhigang WeiSha LiShushen ZhangRanggao Xie
    • Yinghao LiGuangdan LiuGuizhong YuAnshu LvYanlin LiZhigang WeiSha LiShushen ZhangRanggao Xie
    • B61K5/04B66F7/24B66F7/06E02B17/08
    • B61K5/04B66F7/0641B66F7/243E02B17/0818
    • The invention discloses an under-floor lifting jack for high-speed EMU train, comprising: a main control electric part for controlling the jack, multiple bogie lifting means arranged in pits, fixed rails on the ground between adjacent pits, and body hoists movable along dedicated rails on both sides of the bogie lifting means, wherein lifting rails of the bogie lifting means and the fixed rails form continuous rails, and one or more of the bogie lifting means are set in each pit and adapted for lifting individually or synchronously in combination according to the wheel positions of different types of electric multiple unit trains under the control of the main control electric part. The invention is compatible with the maintenance of various EMU trains, thus the same lifting jack can satisfy maintenance requirements of various EMU trains, resulting in high compatibility and construction cost-reduction of the maintenance base for the EMU train.
    • 本发明公开了一种用于高速动车组列车的地板下起重吊架,包括:用于控制千斤顶的主控制电气部件,布置在凹坑中的多个转向架提升装置,相邻凹坑之间的地面上的固定轨道以及可沿着其移动的主体升降机 转向架提升装置两侧的专用导轨,其中转向架提升装置和固定轨道的提升轨道形成连续轨道,并且一个或多个转向架提升装置设置在每个凹坑中,并且适于组合地单独或同步地提升 根据主控电气部分控制的不同类型电动多单元列车的车轮位置。 本发明与各种EMU列车的维护兼容,因此相同的起升千斤顶可以满足各种EMU列车的维护要求,从而实现了EMU列车维修基地的高兼容性和施工成本降低。
    • 2. 发明申请
    • UNDER-FLOOR LIFTING JACK FOR HIGH-SPEED ELECTRIC MULTIPLE UNIT TRAINSET
    • 用于高速电动多单元火车的地板升降机
    • US20120025158A1
    • 2012-02-02
    • US13139288
    • 2010-08-19
    • Yinghao LiGuangdan LiuGuizhong YuAnshu LvYanlin LiZhigang WeiSha LiShushen ZhangRanggao Xie
    • Yinghao LiGuangdan LiuGuizhong YuAnshu LvYanlin LiZhigang WeiSha LiShushen ZhangRanggao Xie
    • B66F7/10
    • B61K5/04B66F7/0641B66F7/243E02B17/0818
    • The invention discloses an Under-Floor Lifting Jack for High-Speed EMU trainset, comprising: a Main Electric Control Part for controlling the Jack, multiple Bogie Lifting Means arranged in pits, Fixed Rails on the ground between adjacent pits, and Body Hoists movable along dedicated rails on both sides of the Bogie Lifting Means, wherein Lifting Rails of the Bogie Lifting Means and the Fixed Rails form continuous rails, and one or more of the Bogie Lifting Means are set in each pit and adapted for lifting individually or synchronously in combination according to the wheel positions of different types of Electric Multiple Unit Trainsets under the control of the Main Electric Control Part. The invention is compatible with the maintenance of various EMU trainsets, thus the same lifting jack can satisfy maintenance requirements of various EMU trainsets, resulting in high compatibility and construction cost-reduction of the maintenance base for the EMU trainset.
    • 本发明公开了一种用于高速动车组列车的地下起吊插座,包括:用于控制杰克的主要电气控制部件,布置在凹坑中的多个转向架提升装置,相邻凹坑之间的地面上的固定轨道以及可沿着其移动的机体提升机 转向架提升装置两侧的专用轨道,其中转向架提升装置的起重轨道和固定轨道形成连续的轨道,并且一个或多个转向架提升装置设置在每个坑中并且适于组合地单独或同步地提升 根据主电控部分控制的不同类型电动多单元列车的轮位。 本发明与各种EMU列车的维护兼容,因此相同的起重千斤顶可以满足各种EMU列车的维护要求,从而实现了EMU列车维护基地的高兼容性和施工成本降低。
    • 3. 发明申请
    • Mobile Device Collaboration
    • 移动设备协作
    • US20080216125A1
    • 2008-09-04
    • US12040728
    • 2008-02-29
    • Shipeng LiYongguang ZhangGuo Bin ShenYanlin Li
    • Shipeng LiYongguang ZhangGuo Bin ShenYanlin Li
    • H04N7/16H04N11/02
    • H04N21/4307G06F3/1446G09G2356/00G09G2370/16H04N13/239H04N21/4122H04N21/41407H04N21/4316H04N21/436H04N21/44231H04N21/4436
    • Systems and methods are described for mobile device collaboration. An exemplary collaborative architecture enables aggregation of resources across two or more mobile devices, in such a manner that the aggregation of resources is practical even considering the miniaturized and limited battery power of most mobile devices. In a video implementation, the exemplary collaborative architecture senses when another mobile device is in close enough proximity to aggregate resources. The collaborative architecture applies an adaptive video decoder so that each mobile device can participate in playing back a larger and higher-resolution video across combined display screens than any single mobile device could playback alone. A cross-display motion prediction technique saves battery power by balancing the amount of collaborative communication between devices against the local processing that each device performs to display visual motion across the boundary separating displays.
    • 描述了用于移动设备协作的系统和方法。 示例性协作架构使得可以以两种或多种移动设备的资源聚合,即使考虑到大多数移动设备的小型化和有限的电池功率,资源的聚集也是实际的。 在视频实现中,示例性协作架构感知何时其他移动设备足够靠近聚合资源。 协作架构应用自适应视频解码器,使得每个移动设备可以通过组合的显示屏幕参与比单独的移动设备单独播放的更大和更高分辨率的视频。 交叉显示运动预测技术通过平衡设备之间的协作通信量与每个设备执行的本地处理以跨越分界显示器的视觉运动来节省电池电力。
    • 4. 发明申请
    • WIND TURBINE HOLDING AND LIFTING SYSTEM AND MOVABLE OPERATING PLATFORM ABOVE WATER
    • 风力发电机组和升降系统及水上运行平台
    • US20110129334A1
    • 2011-06-02
    • US12729803
    • 2010-03-23
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • F03D11/00
    • B63B35/4413F03D13/10F03D13/40F05B2230/6102F05B2240/95Y02E10/727Y02P70/523
    • The present invention which relates to the field of offshore wind turbine installation technology, discloses a wind turbine holding and lifting system for a movable operating platform above water. The wind turbine holding and lifting system comprises a door-type installation frame, a wind turbine lifting device and enclasping means for clamping the wind turbine tower, the door-type installation frame including a first leg, a second leg and no less than one beam fixed between the first and second legs, the wind turbine lifting device being attached to the door-type installation frame with its lifting end connected to the wind turbine tower. The wind turbine holding and lifting system with such a structure is available for a movable operating platform above water, the enclasping means and the wind turbine lifting device of the wind turbine holding and lifting system being capable of completely constraining the wind turbine such that the assembled wind turbine can be fixed in a wind turbine installation state. The present invention further discloses a movable operating platform above water.
    • 涉及海上风力发电机安装技术领域的本发明公开了一种用于水上移动操作平台的风力涡轮机保持和提升系统。 风力涡轮机保持和提升系统包括门式安装框架,风力涡轮机提升装置和用于夹紧风力涡轮机塔架的包围装置,门型安装框架包括第一腿部,第二腿部和不少于一个梁 固定在第一和第二腿之间,风力涡轮机提升装置连接到门式安装框架,其提升端连接到风力涡轮机塔架。 具有这种结构的风力涡轮机保持和提升系统可用于水上的可移动操作平台,风力涡轮机保持和提升系统的包围装置和风力涡轮机提升装置能够完全约束风力涡轮机,使得组装 风力涡轮机可以固定在风力涡轮机的安装状态。 本发明还公开了一种在水上方的可移动操作平台。
    • 5. 发明申请
    • Support Leg and A Mobile Offshore Work Platform
    • 支持腿和移动离岸工作平台
    • US20110129304A1
    • 2011-06-02
    • US12731867
    • 2010-03-25
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • E02D5/74
    • E02B17/021B63B21/26E02B2017/0056E02B2017/0078E02D27/52Y02E10/72
    • The present invention discloses a support leg and a mobile offshore work platform having that leg. The disclosed support leg for a mobile offshore work platform comprises a support arm extending in a vertical direction, further comprising a support platform that has a cross section larger than that of the support arm, and that the lower end of said support arm is fixed to the upper surface of the support platform. When wind turbine installations or other offshore works are carried in sea areas of soft foundation ground, the support platform is supported on a soft foundation ground by a larger cross-sectional area, providing a greater support force and improving the stability of the mobile offshore work platform, and the mobile offshore work platform can be used to complete wind turbine installations and other predetermined works in sea areas of soft foundation ground.
    • 本发明公开了一种支撑腿和具有该腿的移动式海上作业平台。 所公开的用于移动海上作业平台的支撑腿包括沿垂直方向延伸的支撑臂,还包括具有大于支撑臂的横截面的支撑平台,并且所述支撑臂的下端固定到 支撑平台的上表面。 当风力涡轮机设备或其他海上作业在软基础地面的海域运载时,支撑平台由较大的横截面积支撑在软基础地基上,提供更大的支撑力,提高移动式海上作业的稳定性 平台和移动式海上作业平台,可用于完成软基地海域的风力发电机组和其他预定工程。
    • 6. 发明申请
    • WIND TURBINE HOLDING AND LIFTING SYSTEM AND MOVABLE OPERATING PLATFORM ABOVE WATER
    • 风力发电机组和升降系统及水上运行平台
    • US20110126748A1
    • 2011-06-02
    • US12729823
    • 2010-03-23
    • Jialiang WUXinming WangYanlin LiJunlei Bai
    • Jialiang WUXinming WangYanlin LiJunlei Bai
    • B63B35/44F03D11/00F03D11/04F03D9/00B66D1/60B66F19/00B63B43/10F03B13/00
    • F03D13/25E02B2017/0039E02B2017/0043E02B2017/0047E02B2017/0091F03D13/10F03D13/40F05B2240/93F05B2240/95Y02E10/727
    • The present invention which relates to the field of offshore wind turbine installation technology, discloses a wind turbine holding and lifting system for a movable operating platform above water. The wind turbine holding and lifting system comprises a first standing column, a second standing column, a beam lifting device, no less than one beam and enclasping means for holding the wind turbine tower; the first standing column and the second standing column are juxtaposed, and the opposed faces of the first and second standing columns are provided with guiding grooves for sliding the beams; the enclasping means is arranged on the beam, and the two ends of the beam are interfitted within the guiding grooves of the first and second standing columns; the beam lifting device is fixed to the first or second standing column, and the lifting end of the beam lifting device is connected to the beam. The wind turbine holding and lifting system with such a structure can fix the assembled wind turbine in the installation state and the wind turbine can be lifted and lowered. The present invention further discloses a movable operating platform above water.
    • 涉及海上风力发电机安装技术领域的本发明公开了一种用于水上移动操作平台的风力涡轮机保持和提升系统。 风力涡轮机保持和提升系统包括第一立柱,第二立柱,梁提升装置,不少于一个梁和用于保持风力涡轮机塔架的包围装置; 第一立柱和第二立柱相并列,并且第一和第二立柱的相对面设置有用于滑动梁的引导槽; 包围装置设置在梁上,梁的两端与第一和第二立柱的导槽相互配合; 梁提升装置固定在第一或第二立柱上,梁提升装置的提升端连接到梁上。 具有这种结构的风力涡轮机举升系统可以将组装的风力涡轮机固定在安装状态,并且可以提升和降低风力涡轮机。 本发明还公开了一种在水上方的可移动操作平台。
    • 9. 发明申请
    • WIND TURBINE INSTALLATION VESSEL AND A GRAVITY CENTER ADJUSTMENT DEVICE THEREOF
    • 风力涡轮机安装船和重力中心调整装置
    • US20110129329A1
    • 2011-06-02
    • US12754502
    • 2010-04-05
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • F03D11/00
    • B63B39/02B63B25/28F03D13/10F03D13/25F05B2240/932Y02E10/727
    • The present invention discloses a gravity center adjustment device (2) for a wind turbine installation vessel. The gravity center adjustment device (2) is movably mounted to an outside of a vessel body (4) of the wind turbine installation vessel, so that the gravity center adjustment device (2) can selectively move in a plane substantially parallel with the vessel body (4). Since the gravity center adjustment device (2) according to the invention is movably installed to the vessel body and can move in a plane substantially parallel with the vessel body (4) so as to adjust the horizontal position of the gravity center of the installation vessel, its ability of adjusting the gravity center of the wind turbine installation vessel can be improved and the stability of the wind turbine installation vessel can be improved. Therefore, the operation efficiency can be improved and the cost of constructing a wind power plant on the offshore can be reduced. The present invention also discloses a wind turbine installation vessel including the gravity center adjustment devices (2) described above.
    • 本发明公开了一种用于风力涡轮机安装容器的重心调节装置(2)。 重力调节装置(2)可移动地安装在风力涡轮机安装容器的容器主体(4)的外部,使得重心调节装置(2)可以选择性地在与容器主体平行的平面中移动 (4)。 由于根据本发明的重心调节装置(2)可移动地安装到容器主体上并且可以在与容器主体(4)基本平行的平面中移动,以便调节安装容器的重心的水平位置 可以提高其调整风力涡轮机安装容器的重心的能力,并且可以提高风力涡轮机安装容器的稳定性。 因此,可以提高运行效率,降低在海上建设风力发电厂的成本。 本发明还公开了一种包括上述重心调节装置(2)的风力涡轮机安装容器。
    • 10. 发明申请
    • WIND TURBINE INSTALLATION VESSEL AND A GRAVITY CENTER ADJUSTMENT DEVICE THEREOF
    • 风力涡轮机安装船和重力中心调整装置
    • US20110126747A1
    • 2011-06-02
    • US12754524
    • 2010-04-05
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • Jialiang WuXinming WangYanlin LiJunlei Bai
    • B63B43/08B63B43/04B63B1/00
    • B63B25/28B63B39/02F03D13/10F03D13/25F05B2240/932Y02E10/727
    • The present invention discloses a gravity center adjustment device for a wind turbine installation vessel, with the gravity center adjustment device (2) fixedly mounted to the outside of the vessel body (4) of the wind turbine installation vessel. The existence of the gravity center adjustment device (2) according to the present invention is independent from the vessel body and no longer limited by the size of the installation vessel and the size of the ballast bank provided in the vessel body of the wind turbine installation vessel. The size of the gravity center adjustment device (2) may be set as desired so that the adjustment ability of the gravity center adjustment device can be changed, whereby its ability for adjusting gravity center of the wind turbine installation vessel can be improved and the stability of the wind turbine installation vessel can be improved. Therefore, the wind turbine installation vessel can operate in an environment of poor weather condition, so that the operation efficiency can be improved and the cost of constructing a wind power plant on the offshore can be reduced. The present invention also discloses a wind turbine installation vessel including the above-mentioned gravity center adjustment device (2).
    • 本发明公开了一种用于风力涡轮机安装容器的重心调节装置,重心调节装置(2)固定地安装在风力涡轮机安装容器的容器本体(4)的外部。 根据本发明的重心调节装置(2)的存在独立于船体,不再受安装船的尺寸和设置在风力涡轮机装置的船体中的压载舱的尺寸的限制 船只。 重心调整装置(2)的尺寸可以根据需要设定,从而能够改变重心调节装置的调节能力,能够提高调整风力发电机组重心的重心的能力和稳定性 的风力涡轮机安装容器。 因此,风力发电机安装船可以在天气条件恶劣的环境下运行,从而可以提高运行效率,降低海上风力发电厂的建设成本。 本发明还公开了一种包括上述重心调节装置(2)的风力涡轮机安装容器。