首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >DYNAMIC MODEL OF A MOBILE OFFSHORE DRILLING UNIT IN DEEP WATER ENVIRONMENTS FOR DRILLING SIMULATIONS
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DYNAMIC MODEL OF A MOBILE OFFSHORE DRILLING UNIT IN DEEP WATER ENVIRONMENTS FOR DRILLING SIMULATIONS

机译:深水环境移动海上钻井装置的动态模型,用于钻探模拟

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In this study, a dynamic model of a Mobile Offshore Drilling Unit (MODU) is described that simulates drilling scenarios, imposed by the environmental factors in offshore drilling. The Response Amplitude Operators (RAOs) of an industry-recognized semi-submersible MODU are modeled for all six degrees of freedom. A stochastic modeling of waves in the North Sea is used and heave disturbance induced by elevation motion of sea surface is modeled using the JONSWAP spectrum. A bond graph model of a MODU predicts axial vibration, torsional vibration, and coupling between axial and torsional vibration due to bit-rock interaction. Axial and torsional submodels use a lumped-segment approach. The model can predict the expected coupling between Weight On Bit (WOB), bit speed, and bit-rock interface conditions. A series of sensitivity analyses were performed to investigate the significance of MODU motion on WOB fluctuations.
机译:在本研究中,描述了移动海上钻井单元(MODU)的动态模型,用于模拟海上钻井环境因素所施加的钻井场景。行业识别的半潜水模型的响应幅度运算符(RAOS)为所有六个自由度建模。使用Jonswap谱进行建模使用北海波浪在北海中的波浪的随机造型,并通过海面升高运动引起的扰动。 MODU的键曲线图模型预测轴向振动,扭转振动和轴向和扭转振动之间的耦合,由于位岩相互作用。轴向和扭转子模型使用集总段方法。该模型可以预测位(WOB),比特速度和位岩界面条件的权重之间的预期耦合。进行了一系列敏感性分析,以调查Modu Motion对WOB波动的重要性。

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