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首页> 外文期刊>The Canadian Journal of Chemical Engineering >AN OPTIMAL MODEL FOR PREDICTING THE PRODUCTIVITY OF PERFORATED VERTICAL HTHP WELLS
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AN OPTIMAL MODEL FOR PREDICTING THE PRODUCTIVITY OF PERFORATED VERTICAL HTHP WELLS

机译:多孔HTHP渗透井产能的最优模型。

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As perforation helps regulate inflow from the reservoir, the optimisation of the perforating parameters is critically important in increasing productivity. In this paper, a one-dimensional reservoir/wellbore coupling model is presented to predict the productivity of perforated vertical high-temperature-high-pressure (HTHP) wells. A comprehensive perforation skin factor is developed in the model, which takes into consideration many reservoir and perforation parameters, such as length, density, radius, anisotropy, phasing, partial penetration, perforation damage and formation damage. An optimisation strategy is established to investigate the effect of the perforation parameters on productivity based on the skin factor of a well. The model is applied to a 7100 m deep HTHP gas well to demonstrate its use in determining optimal perforation parameters. The simulation results demonstrate that an optimisation strategy improves the perforated well inflow performance. Then, a sensitivity analysis is conducted to investigate the effect of reservoir and perforation parameters on productivity.
机译:由于射孔有助于调节来自储层的流入量,因此射孔参数的优化对于提高生产率至关重要。本文提出了一种一维油藏/井筒耦合模型来预测多孔垂直高温高压井的产量。该模型开发了一个综合的射孔表皮因子,其中考虑了许多储层和射孔参数,例如长度,密度,半径,各向异性,定相,部分穿透,射孔破坏和地层破坏。建立了一种优化策略,以基于井的表皮因子研究射孔参数对生产率的影响。该模型被应用于7100 m深的HTHP气井,以证明其在确定最佳射孔参数中的用途。仿真结果表明,优化策略可以改善射孔井的入流性能。然后,进行敏感性分析以研究储层和射孔参数对生产率的影响。

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