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    • 71. 发明授权
    • Communication with multiple storage processors via direct connections
    • 通过直接连接与多个存储处理器进行通信
    • US08433777B1
    • 2013-04-30
    • US11904129
    • 2007-09-26
    • Qing LiuYing Guo
    • Qing LiuYing Guo
    • G06F15/16
    • G06F11/2089G06F3/0626G06F3/0659G06F3/0689G06F11/2005G06F11/201G06F11/2221G06F11/2294G06F11/3461
    • A system that provides efficient expansion capability of a storage unit under test including multiple storage processors and reduces a number of required Ethernet ports on a client device and a reduced number of physical connections on the client device. A first processor and a peer processor of a storage processor system may be coupled to counterpart processors on one or more other storage processor systems using direct port-to-port connections and/or using a network infrastructure. A command from the client device may be passed among first processors and peer processors of the multiple storage processor systems until the correct destination processor for the command is reached, and data packets may be passed from a source processor of a storage processor system through processors of other storage processor systems until the client device is reached.
    • 提供被测存储单元的有效扩展能力的系统,包括多个存储处理器,并减少客户端设备上所需的以太网端口数量,减少客户端设备上的物理连接数量。 存储处理器系统的第一处理器和对等处理器可以使用直接端口到端口连接和/或使用网络基础设施耦合到一个或多个其他存储处理器系统上的对应处理器。 可以在多个存储处理器系统的第一处理器和对等处理器之间传递来自客户端设备的命令,直到达到用于该命令的正确目的地处理器,并且可以从存储处理器系统的源处理器通过处理器 其他存储处理器系统,直到达到客户端设备。
    • 72. 发明授权
    • Apparatus for measuring dielectric properties of parts
    • 用于测量零件介电性能的装置
    • US08269510B2
    • 2012-09-18
    • US12240291
    • 2008-09-29
    • Jaehyun KimArthur H. SatoKeith ComendantQing LiuFeiyang Wu
    • Jaehyun KimArthur H. SatoKeith ComendantQing LiuFeiyang Wu
    • G01R27/26
    • G01N27/04G01R27/2623Y10T29/49117
    • A chamber formed from an electrically conductive material is connected to a ground potential. A hot electrode formed from an electrically conductive material is disposed within the chamber in a substantially horizontal orientation and is physically separated from the chamber. The hot electrode includes a top surface defined to support a part to be measured. A radiofrequency (RF) transmission rod is connected to extend from a bottom surface of the hot electrode through an opening in a bottom of the chamber and be physically separated from the chamber. The RF transmission rod is defined to transmit RF power from a conductor plate in an electrical components housing to the hot electrode. An upper electrode formed from an electrically conductive material is disposed within the chamber in a substantially horizontal orientation. The upper electrode is electrically connected to the chamber and is defined to be movable in a vertical direction.
    • 由导电材料形成的腔室连接到地电位。 由导电材料形成的热电极以大致水平的方向设置在腔室内,并且与腔室物理分离。 热电极包括限定为支撑要测量的部分的顶表面。 射频(RF)传输杆被连接以从热电极的底表面延伸通过腔室的底部中的一个开口,并与腔室物理分离。 RF传输杆被定义为将RF功率从电气部件壳体中的导体板传递到热电极。 由导电材料形成的上电极以大致水平的方向设置在腔室内。 上电极电连接到腔室并被限定为可在垂直方向上移动。
    • 73. 发明授权
    • Low bed pressure drop circulating fluidized bed boiler and combustion process
    • 低床压降循环流化床锅炉和燃烧过程
    • US08161917B2
    • 2012-04-24
    • US12264222
    • 2008-11-03
    • Hairui YangHai ZhangGuangxi YueJunfu LvQing LiuJiansheng Zhang
    • Hairui YangHai ZhangGuangxi YueJunfu LvQing LiuJiansheng Zhang
    • F23C10/01
    • F23C10/10F23C10/002
    • A method, system and apparatus for a low bed pressure drop circulating fluidized bed (CFB) boiler associated with fast bed CFB combustion are disclosed. The CFB boiler may be operated according to the following set of conditions. In an upper area of a combustor of the boiler, a flow pattern of the two-phase gas-solid flow may be placed in a fast bed fluidization state. The combustor temperature may be within a range of 850° C.-930° C. The fluidizing air velocity may be within 4 m/s and 6.2 m/s. An average size of a bed material in the combustor may be smaller than 300 μm. The gas-solid flow above of the secondary air inlet in the combustor may be kept in the fast bed fluidization state while maintaining a solid concentration of between 1 kg/m3 to 5 kg/m3. An inventory of bed material per unit area and/or the pressure drop in the combustor may be less than 8 kPa.
    • 公开了一种与快速床CFB燃烧相关的低床压降循环流化床(CFB)锅炉的方法,系统和装置。 CFB锅炉可以根据以下条件进行操作。 在锅炉的燃烧器的上部区域中,两相气体 - 固体流的流动模式可以放置在快速床流化状态。 燃烧器温度可以在850℃-93℃的范围内。流化空气速度可以在4m / s和6.2m / s之内。 燃烧器中的床料的平均尺寸可以小于300μm。 燃烧器中的二次空气入口上方的气固流可以保持在快床流化状态,同时保持在1kg / m3至5kg / m3之间的固体浓度。 每单位面积的床材料和/或燃烧器中的压降的清单可以小于8kPa。
    • 76. 发明授权
    • Contour measuring probe
    • 轮廓测量探头
    • US07726036B2
    • 2010-06-01
    • US11966951
    • 2007-12-28
    • Qing LiuJun-Qi LiTakeo Nakagawa
    • Qing LiuJun-Qi LiTakeo Nakagawa
    • G01B5/20G01B5/00
    • G01B5/012G01B3/008
    • An exemplary contour measuring probe includes a guide (12), a movable rack, a counter-balancing mechanism, a linear measuring scale (24), and a displacement sensor (26). The movable rack comprises a tip extension (20) for touching a surface of an object. The tip extension (20) is pushed to move towards the object under a gravitational force acting on the movable rack. The counter-balancing mechanism is configured to partially counter balance the gravitational force acting on the movable rack. The linear measuring scale (24) displays values of displacements of the tip extension (20). The displacement sensor (26) detects and reads the displacement values displayed by the linear measuring scale (24).
    • 示例性轮廓测量探针包括导向件(12),可移动齿条,反平衡机构,线性测量秤(24)和位移传感器(26)。 可动齿条包括用于接触物体表面的末端延伸部(20)。 在作用在可移动支架上的重力作用下,推动末端延伸部20向物体移动。 反平衡机构被构造成部分地平衡作用在可移动支架上的重力。 线性测量刻度(24)显示尖端延伸部(20)的位移值。 位移传感器(26)检测并读取由线性测量秤(24)显示的位移值。
    • 77. 发明授权
    • Contour measuring method for measuring aspects of objects
    • 轮廓测量方法用于测量物体的各个方面
    • US07654008B2
    • 2010-02-02
    • US11966956
    • 2007-12-28
    • Qing LiuJun-Qi LiTakeo Nakagawa
    • Qing LiuJun-Qi LiTakeo Nakagawa
    • G01B5/20
    • G01B5/20G01B5/012
    • An exemplary contour measuring method for measuring aspects of objects includes: (1) providing a contour measuring probe (10) comprising a tip extension (16), a displacement sensor (19), and a processor (119) connected to the displacement sensor, the tip extension being slidable in a first direction; (2) driving the tip extension to move so as to contact with the object at a first predetermined point, and recording a coordinate of the first predetermined point in the processor; (3) driving one of the tip extension and the object to move, thus, the tip extension contacting with the object at a second predetermined point, the displacement sensor sensing a displacement of the tip extension along the first direction and sending the displacement to the processor, and the processor recording a coordinate of the second predetermined point; and (4) repeating the step (3), the processor recording a series of measured coordinates of points.
    • 用于测量物体方面的示例性轮廓测量方法包括:(1)提供包括尖端延伸部(16),位移传感器(19)和连接到位移传感器的处理器(119)的轮廓测量探针(10) 所述尖端延伸部可沿第一方向滑动; (2)驱动尖端延伸部移动以便在第一预定点与物体接触,并且在处理器中记录第一预定点的坐标; (3)驱动尖端延伸部中的一个和物体移动,因此,尖端延伸部在第二预定点处与物体接触,位移传感器感测尖端延伸部沿着第一方向的位移,并将位移发送到 处理器,并且所述处理器记录所述第二预定点的坐标; 和(4)重复步骤(3),处理器记录一系列点的测量坐标。
    • 80. 发明申请
    • LOW BED PRESSURE DROP CIRCULATING FLUIDIZED BED BOILER AND COMBUSTION PROCESS
    • 低压锅炉循环流化床锅炉和燃烧过程
    • US20090120384A1
    • 2009-05-14
    • US12264222
    • 2008-11-03
    • HAIRUI YANGHai ZhangGuangxi YueJunfu LVQing LiuJiansheng Zhang
    • HAIRUI YANGHai ZhangGuangxi YueJunfu LVQing LiuJiansheng Zhang
    • F23C10/08F23C10/20F22B1/00
    • F23C10/10F23C10/002
    • A method, system and apparatus for a low bed pressure drop circulating fluidized bed (CFB) boiler associated with fast bed CFB combustion are disclosed. The CFB boiler may be operated according to the following set of conditions. In an upper area of a combustor of the boiler, a flow pattern of the two-phase gas-solid flow may be placed in a fast bed fluidization state. The combustor temperature may be within a range of 850° C.-930° C. The fluidizing air velocity may be within 4 m/s and 6.2 m/s. An average size of a bed material in the combustor may be smaller than 300 μm. The gas-solid flow above of the secondary air inlet in the combustor may be kept in the fast bed fluidization state while maintaining a solid concentration of between 1 kg/m3 to 5 kg/m3. An inventory of bed material per unit area and/or the pressure drop in the combustor may be less than 8 kPa.
    • 公开了一种与快速床CFB燃烧相关的低床压降循环流化床(CFB)锅炉的方法,系统和装置。 CFB锅炉可以根据以下条件进行操作。 在锅炉的燃烧器的上部区域中,两相气体 - 固体流的流动模式可以放置在快速床流化状态。 燃烧器温度可以在850℃-93℃的范围内。流化空气速度可以在4m / s和6.2m / s之内。 燃烧器中的床料的平均尺寸可以小于300μm。 燃烧器中的二次空气入口上方的气固流可以保持在快床流化状态,同时保持在1kg / m3至5kg / m3之间的固体浓度。 每单位面积的床材料和/或燃烧器中的压降的清单可以小于8kPa。