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Drilling wellbores with optimal physical drill string conditions

机译:在最佳物理钻柱条件下进行钻井

摘要

A drilling system includes a control unit and a bottomhole assembly (BHA) coupled to a drill string. The control unit uses measurements from sensors distributed throughout the drill string and BHA to determine the physical condition of the drill string and BHA and to determine whether drilling can be optimized. The drill string sensors are housed in receiver subs and optionally can be positioned on extensible members. The receiver sub also can include a short-hop telemetry module, a processor module, and a clock module. In one embodiment, the receiver subs include seismic sensors for enabling vertical seismic profiling. During operation, the processor visually presents to the operator via one or more graphical user interfaces a dynamically updated pictorial image representing the drilling system. The image is annotated with an appropriate visual signal to indicate a determined physical condition at a given location or component. The processor can also display recommended adjustments to drilling parameters for increasing drilling rates, improving tool life, and more precise steering.
机译:钻井系统包括控制单元和联接至钻柱的井底组件(BHA)。控制单元使用分布在整个钻柱和BHA中的传感器的测量值来确定钻柱和BHA的物理状况,并确定是否可以优化钻井。钻柱传感器装在接收器接头中,可以选择将其放置在可延伸的构件上。接收器子还可以包括短跳遥测模块,处理器模块和时钟模块。在一实施例中,接收器接头包括地震传感器,用于实现垂直地震剖面。在操作期间,处理器通过一个或多个图形用户界面可视地向操作员呈现代表钻井系统的动态更新的图像。用适当的视觉信号注释图像,以指示在给定位置或组件处确定的物理状况。处理器还可以显示对钻孔参数的建议调整,以提高钻孔速度,延长工具寿命并实现更精确的操纵。

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