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首页> 外文期刊>Journal of Petroleum Science & Engineering >Coupled modeling circulating temperature and pressure of gas-liquid two phase flow in deep water wells
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Coupled modeling circulating temperature and pressure of gas-liquid two phase flow in deep water wells

机译:深水井气液两相流循环温度与压力耦合模拟

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Accurate predictions of wellbore temperature and pressure profile are essential for underbalanced drilling operations while circulating aerated drilling fluids in deep water wells. Based on aerated drilling fluids flow and heat transfer characteristics in deep water wells, coupled conservations of mass and momentum and energy have been developed to compute wellbore temperature and pressure profile. Discrete equations were formulated via thermodynamics correlations and finite volume integration. An algorithm was developed in which temperature and pressure are coupled, flow fields inside drill string and annular are coupled. Effects of energy sources, riser insulation blanket, sea current, etc. on heat transfer of gas liquid two phase flow with environment were considered in the model. Comparisons with Keller's wellbore temperature data and two phase flow pressure data from the Louisiana full scale experiments confirmed this model and the suggested algorithm. Wellbore temperature and pressure distribution while circulating aerated drilling fluids were analyzed with a simulated deep water well.
机译:井下温度和压力曲线的准确预测对于在深水井中循环充气钻井液时欠平衡钻井作业至关重要。基于深水井中的充气钻井液流动和传热特性,开发了质量,动量和能量的守恒耦合以计算井眼温度和压力曲线。离散方程是通过热力学相关性和有限体积积分制定的。开发了一种算法,其中温度和压力耦合,钻柱内部和环形内部的流场耦合。该模型考虑了能源,立管隔热层,海流等因素对气液两相流与环境传热的影响。与Keller井筒温度数据和路易斯安那州全规模实验的两相流压力数据进行比较,证实了该模型和建议的算法。用模拟深水井分析了循环充气钻井液时的井眼温度和压力分布。

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