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首页> 外文期刊>Journal of natural gas science and engineering >A new semi-analytical model for predicting the performance of horizontal wells completed by inflow control devices in bottom-water reservoirs
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A new semi-analytical model for predicting the performance of horizontal wells completed by inflow control devices in bottom-water reservoirs

机译:一种新的半分析模型,用于预测底水油藏中的流量控制装置完成的水平井的性能

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Simulation and prediction the performance of horizontal wells completed by inflow control devices is the foundation of ICDs completion parameters design-optimization. In this work, a new semi-analytical model that couples the reservoir inflow to the downhole flow is developed for predicting the performance of horizontal wells with inflow control devices in a box-shaped reservoir with bottom-water drive. The reservoir inflow model is based on a 3D volumetric source model that incorporates reservoir permeability heterogeneity in the near well region, reservoir anisotropy, and near-wellbore formation damage. The downhole flow model considers pressure drops due to fluid flow in the tubing, ICDs, and annulus. The calculated results are compared with that obtained from reservoir simulator Eclipse (TM) showing a good agreement. Influential factors analysis indicates that the reduction in the ICD flow-restriction size gives an even more uniform inflow profile at the cost of reduction in well's productivity. For fractured reservoirs, the optimum well production performance is reached when the number of, openhole packers is maximum, which means there is only one ICD joint per compartment. Variable ICD flow-restriction size design not only further improves the well production performance but also causes the increase in well's productivity compared with uniform ICD flow-restriction size design. Ignoring annulus flow will result in higher calculation value of well's productivity. (C) 2015 Elsevier B.V. All rights reserved.
机译:仿真和预测由流入控制装置完成的水平井的性能是ICD完成参数设计优化的基础。在这项工作中,开发了一种新的半分析模型,该模型将油藏流入量与井下流量耦合在一起,用于通过底流驱动的箱形油藏中的流量控制装置预测水平井的性能。储层流入模型基于3D体积源模型,该模型结合了近井区域的储层渗透率非均质性,储层各向异性和近井眼地层损害。井下流动模型考虑了由于管道,ICD和环空中的流体流动引起的压降。计算结果与从油藏模拟器Eclipse(TM)获得的结果进行了比较,显示出很好的一致性。影响因素分析表明,ICD流量限制尺寸的减小将以降低井的生产率为代价提供更均匀的流入剖面。对于裂缝性油藏,当裸眼封隔器的数量最大时,可以达到最佳的油井生产性能,这意味着每个隔室只有一个ICD节理。与统一的ICD流量限制尺寸设计相比,可变的ICD流量限制尺寸设计不仅进一步提高了井的生产性能,而且还提高了井的生产率。忽略环空流量将导致更高的油井生产率计算值。 (C)2015 Elsevier B.V.保留所有权利。

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