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    • 5. 发明申请
    • SYSTEM AND METHOD FOR FLUID TREATMENT
    • 流体处理系统和方法
    • WO2011138575A3
    • 2013-01-24
    • PCT/GB2011000630
    • 2011-04-21
    • HALLIBURTON ENERGY SERV INCWARREN WESLEY JCURTIS PHILIP ANTHONY
    • WARREN WESLEY JCURTIS PHILIP ANTHONY
    • E21B43/16A61L2/10E21B43/26
    • E21B43/25A61L2/10E21B43/16E21B43/26
    • A method of treating a wellbore servicing fluid includes disposing an ultraviolet treatment chamber in fluid communication with an inlet of a pump, operating the pump, and drawing a wellbore servicing fluid through the ultraviolet treatment chamber in response to operating the pump. A wellbore servicing fluid treatment system has a first ultraviolet treatment chamber and a first pump in selective fluid communication with the first ultraviolet treatment chamber. The pump is downstream relative to the first ultraviolet treatment chamber and the pump is configured to selectively draw a wellbore servicing fluid through the first ultraviolet treatment chamber. A method of servicing a wellbore includes connecting an ultraviolet fluid treatment system to a blender, operating a pump of the blender, drawing a wellbore servicing fluid through the ultraviolet treatment system in response to operating the pump of the blender, and delivering the wellbore servicing fluid into the wellbore.
    • 一种处理井筒维修流体的方法包括:设置紫外线处理室,其与泵的入口流体连通,操作泵,以及响应于操作泵,通过紫外线处理室抽取井筒维修流体。 井眼维修流体处理系统具有第一紫外线处理室和与第一紫外线处理室选择性流体连通的第一泵。 泵相对于第一紫外线处理室是下游的,并且泵构造成选择性地通过第一紫外线处理室抽取井筒维修流体。 维修井眼的方法包括将紫外线流体处理系统连接到搅拌器,操作搅拌器的泵,响应于操作搅拌器的泵而抽出井筒维修流体通过紫外线处理系统,并且输送井筒维修流体 进入井眼。
    • 7. 发明申请
    • APPARATUS AND METHODS FOR MANAGING EQUIPMENT STABILITY
    • 用于管理设备稳定性的装置和方法
    • WO2010119236A3
    • 2010-12-16
    • PCT/GB2010000513
    • 2010-03-18
    • HALLIBURTON ENERGY SERV INCLUCAS BRUCE CCURTIS PHILIP ANTHONY
    • LUCAS BRUCE CCURTIS PHILIP ANTHONY
    • G01M1/12
    • G01M1/122
    • Apparatus and methods for determining the instability of equipment by measuring the reaction forces at different points at the base of the equipment are disclosed. A plurality of load sensors are symmetrically arranged at the base of the equipment. A Cartesian coordinate system is then imposed on the base of the equipment with the center of the base being the origin of the Cartesian coordinate system. The X-axis and the Y-axis of the Cartesian coordinate system are arranged to define a plane corresponding to the base of the equipment. Each load sensor is then designated with Cartesian coordinates and the reaction force at each load sensor is determined. An overall instability factor for the equipment is then determined from the Cartesian coordinates of each load sensor and the reaction force at that load sensor.
    • 公开了通过测量设备底部不同点的反作用力来确定设备不稳定性的装置和方法。 多个负载传感器对称地布置在设备的底部。 然后将笛卡尔坐标系施加在设备的基座上,其中心点是笛卡尔坐标系的原点。 笛卡尔坐标系的X轴和Y轴被布置成限定对应于设备基座的平面。 然后每个负载传感器用笛卡尔坐标指定,并确定每个负载传感器处的反作用力。 然后从每个负载传感器的笛卡尔坐标和该负载传感器处的反作用力确定设备的整体不稳定因子。