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临盘油田复杂断块油藏注采井网优化 被引量:7
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作者 王锋 《西安石油大学学报(自然科学版)》 CAS 北大核心 2014年第5期58-60,69,共4页
通过对胜利油区临盘油田复杂断块油藏动静态参数综合分析表明,几何形态、面积大小是影响复杂断块油藏水驱开发效果的敏感因素,在此基础上提出了复杂断块油藏按照形态精细分类方案;依托典型单元,建立了复杂断块油藏特征模型,运用油藏数... 通过对胜利油区临盘油田复杂断块油藏动静态参数综合分析表明,几何形态、面积大小是影响复杂断块油藏水驱开发效果的敏感因素,在此基础上提出了复杂断块油藏按照形态精细分类方案;依托典型单元,建立了复杂断块油藏特征模型,运用油藏数值模拟方法,系统研究了不同面积规模下的分类复杂断块油藏合理注采井网,解决了以油藏单元分类方法指导复杂断块开发适应性、可操作性差的问题。 展开更多
关键词 临盘油田 断块油藏 注采井网优化 断块油藏精细分类 单元特征模型
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Performance evaluation of fracturing-huff-n-percolation-puff(FHnPP)processes in a hydrocarbon reservoir
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作者 Yanan Ding Haiwen Wang +2 位作者 Maoxian Wang Chen Zhang Daoyong Yang 《Petroleum Research》 2025年第3期458-473,共16页
Due to its superior performance on the efficient exploitation of a small fault-block reservoir,a novel technique of fracturing-huff-n-percolation-puff(FHnPP)has received increasing attentions in recent years.In order ... Due to its superior performance on the efficient exploitation of a small fault-block reservoir,a novel technique of fracturing-huff-n-percolation-puff(FHnPP)has received increasing attentions in recent years.In order to clearly identify and understand the associated mechanisms,reservoir simulations have been conducted to evaluate performance of an FHnPP process in a hydrocarbon reservoir.A series of simulation scenarios are designed to evaluate and identify dominant factors based on both single-factor and orthogonal schemes.The FHnPP performance can be understood as follows,i.e.,created(micro-)fractures are extended from the surrounding water-zone deeper into formation during water injection,this process rebuilds the pressure field,enabling more trapped oil to be subsequently driven backwards the well after such(micro-)fractures are closed or partially-closed.Surfactants effectively reduce the water/oil interfacial tension(IFT),but it only increases oil production at early times.The existence of secondary fractures slightly enhances oil recovery at early puff-period after which such a positive impact is gradually vanished.A higher matrix permeability yields a higher ultimate oil recovery,but such a yielded positive effect from fracturing is then degraded.Moreover,the residual permeability of fractures during production(i.e.,the puff process)negatively affect oil recovery,while a longer length of fracture results in more produced oil.Also,both injection rate and soaking time positively affect the oil recovery though the latter is insignificant.The orthogonal analysis indicates that,sensitivity of the dominant factors affecting oil recovery varies from each other,while the sensitivity of FHnPP's advantages to those factors is found also unequal.In the target reservoir with the optimized FHnPP parameters,significant oil increment(i.e.,a recovery factor(RF)of 3.59%(i.e.,609.1 m^(3) oil))can be achieved compared with that of the traditional huff-n-puff(THnP)process.This numerical study not only proves the feasibility and advantages of the FHnPP technique,but also deepens our understanding of its performance and identifies the dominating factors. 展开更多
关键词 fault-block reservoir Fracturing-huff-n-percolation-puff oil recovery Sensitivity analysis Orthogonal design
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