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An implicit unsteady hydraulic solver for suspended cuttings transport in managed pressure wells

机译:用于悬挂压力井的悬挂式切割运输的隐含非定常液压求解器

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摘要

We present a simulation tool for transient events in complex hydraulic networks. The code includes modelling of the transport of suspended cuttings in near-vertical wells. An unstructured finite volume formulation with implicit time integration has been chosen. The unconditional stability of the integrator makes the method suitable for the simulation of transient events over a wide range of characteristic timescales. It handles both very fast transients (e.g. fluid hammer events) and the long-term evolution of the well (e.g. hole cleaning operations). The software has been developed to address the need of the oil industry for a robust and efficient predictive tool allowing effective well control in managed pressure drilling operations. The physical modelling follows the standard practices accepted by the industry (e.g. mud rheology computations). The mathematical foundation of the algorithm is described followed by validation cases that illustrate its capabilities and accuracy. Finally, a practical industrial application example is provided to demonstrate the real-world performance of the software.
机译:我们为复杂液压网络中的瞬态事件提供了一种模拟工具。该代码包括近垂直井中的悬挂切屑运输的建模。选择了具有隐式时间集成的非结构化有限卷制剂。积分器的无条件稳定性使得适用于在各种特征时间尺度上模拟瞬态事件的方法。它处理非常快速的瞬变(例如流体锤事件)和井的长期演进(例如孔清洁操作)。该软件已经开发出来,以解决石油工业的需要,以实现稳健高效的预测工具,允许在托管压力钻井操作中有效控制。物理建模遵循行业所接受的标准实践(例如泥流变学计算)。描述了算法的数学基础,然后描述了验证案例,说明其能力和准确性。最后,提供了一个实际的工业应用程序示例以展示软件的真实表现。

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