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    • 1. 发明申请
    • Centrifugal Pump Connection Device for Electrical Submersible Pump Unit
    • 电动潜水泵单元离心泵连接装置
    • US20140227028A1
    • 2014-08-14
    • US14232854
    • 2012-06-15
    • Pin WuHai ZhouYuliang ShenHouwei XingHeng ZhangShaohua Liu
    • Pin WuHai ZhouYuliang ShenHouwei XingHeng ZhangShaohua Liu
    • F16D1/04
    • F16D1/04F04D13/10F04D29/628F04D29/648F16B2200/506
    • The invention relates to a centrifugal pump connection device for electrical submersible pump unit; two or more centrifugal pumps are fixedly connected successively from top to bottom, the lower end of a centrifugal pump body being a connecting flange and a rabbet at the lower end of the connecting flange inserting in the upper inner bore of an adjacent centrifugal pump body, the contact surface between the connecting flange and the centrifugal pump body is a spherical surface, and the used washer of a bolt is a disc washer; the spherical surface of the connecting flange is a convex spherical surface, and the spherical surface of the upper end of the centrifugal pump body is a concave spherical surface. The device has the following benefits: it has reasonable structure, being able to improve the overall flexibility of the electrical submersible pump unit, and to increase success rate of the electrical submersible pump unit descending into horizontal well and highly-deviated well and durability of the electrical submersible pump, and to largely decrease production cost. The present invention overcomes deficiencies of plastic deformation and breakage of the unit housing and breakage of connection bolts during the process of the electrical submersible pump unit descending into the horizontal well and highly-deviated well, in which flat flange, common spring cushion and bolt are used between conventional centrifugal pumps.
    • 本发明涉及一种用于电潜泵单元的离心泵连接装置; 两个或更多个离心泵从上到下连续地固定连接,离心泵体的下端是连接法兰,在连接凸缘的下端插入相邻离心泵体的上内孔中的拉头, 连接法兰与离心泵体之间的接触表面为球面,螺栓用过的垫圈为圆盘垫圈; 连接法兰的球面为凸球面,离心泵体上端的球面为凹面球面。 该装置具有以下优点:具有合理的结构,能够提高电潜泵单元的整体灵活性,并提高潜水泵单元下降到水平井的成功率,并且具有高度偏差的井和耐久性 电潜泵,并大大降低生产成本。 本发明克服了在潜水泵单元下降到水平井和高偏差井的过程中,单元壳体的塑性变形和断裂的缺陷以及连接螺栓的断裂,其中平的凸缘,普通弹簧垫和螺栓是 在常规离心泵之间使用。
    • 2. 发明申请
    • METHOD AND DEVICE OF LOAD-SHARING IN IRF STACK
    • IRF堆叠中的负载分担方法和设备
    • US20110016243A1
    • 2011-01-20
    • US12787794
    • 2010-05-26
    • Pin WuMaoyong Jiang
    • Pin WuMaoyong Jiang
    • G06F13/20
    • H04L45/125H04L45/02H04L45/22H04L45/70
    • The present invention provides a method and device of load-sharing in an IRF stack. The method includes: the Master device checking a congestion state of the main path, obtaining a path for forwarding service flow according the congestion state of the main path, where the path is the main path or a backup path, and forwarding the service flow to the egress device through the main path or the backup bath to implement the load-sharing in the IRF stack. In the embodiments of the present invention, by checking the congestion states of main path and the backup path in real-time, the load-sharing of the IRF stack is implemented. When new service flow is added, the data may be forwarded through another path, which can improve the efficiency of member devices in the IRF stack and solve the problem of forwarding bottleneck to which the member devices face.
    • 本发明提供了一种IRF堆叠中负载共享的方法和装置。 该方法包括:主设备检查主路径的拥塞状态,根据主路径的拥塞状态,路径为主路径或备用路径,获取路由转发业务流,并将业务流转发到 出口设备通过主路径或备用槽来实现IRF堆栈中的负载共享。 在本发明的实施例中,通过实时检查主路径和备份路径的拥塞状态,实现了IRF堆叠的负载分担。 当添加新业务流时,可以通过另一路径转发数据,提高了IRF堆叠成员设备的效率,解决了成员设备面临的转发瓶颈问题。
    • 3. 发明授权
    • Method and device of load-sharing in IRF stack
    • IRF堆栈中负载分担的方法和设备
    • US08438307B2
    • 2013-05-07
    • US12787794
    • 2010-05-26
    • Pin WuMaoyong Jiang
    • Pin WuMaoyong Jiang
    • G06F15/173
    • H04L45/125H04L45/02H04L45/22H04L45/70
    • The present invention provides a method and device of load-sharing in an IRF stack. The method includes: the Master device checking a congestion state of the main path, obtaining a path for forwarding service flow according the congestion state of the main path, where the path is the main path or a backup path, and forwarding the service flow to the egress device through the main path or the backup bath to implement the load-sharing in the IRF stack. In the embodiments of the present invention, by checking the congestion states of main path and the backup path in real-time, the load-sharing of the IRF stack is implemented. When new service flow is added, the data may be forwarded through another path, which can improve the efficiency of member devices in the IRF stack and solve the problem of forwarding bottleneck to which the member devices face.
    • 本发明提供了一种IRF堆叠中负载共享的方法和装置。 该方法包括:主设备检查主路径的拥塞状态,根据主路径的拥塞状态,路径为主路径或备用路径,获取路由转发业务流,并将业务流转发到 出口设备通过主路径或备用槽来实现IRF堆栈中的负载共享。 在本发明的实施例中,通过实时检查主路径和备份路径的拥塞状态,实现了IRF堆叠的负载分担。 当添加新业务流时,可以通过另一路径转发数据,提高了IRF堆叠成员设备的效率,解决了成员设备面临的转发瓶颈问题。