Optimizing Well Spacing and Fracture Design Using Advanced Multi-Stage Fracture Modeling and Discrete Fractured Reservoir Simulation in Tight Oil Reservoir

C. Tian, Zhengdong Lei, Qingping Jiang, Tianquan Chang, Dongliang Chen, Zhiyuan Lu, Sheng Li
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引用次数: 1

Abstract

Large platforms, long horizontal sections, small well spacings and dense cutting have become economical and effective development means for tight oil reservoirs. Well spacing and fracture design are critical parameters impacting production and Internal rate of return (IRR) of tight oil reservoirs. In order to maximize the total stimulated reservoir area and fracture-controlled reserves, the well spacing and fracture spacing should be small enough. However, in order to minimize the chance of fracture hits caused by offset wells and the overlapping drainage area of a nearby well to avoid Asset spillover, the spacing well should large enough. Based on minifrac data and microseismic fracture mapping results, a natural/hydraulic fracture network was generated and input into an unstructured-grid-based discrete fracture reservoir simulation model. Its accuracy was calibrated with the well production history. For each group of fracture design and well spacing, well interference was determined by estimating ultimate recovery (EUR) difference between a single well and a middle well among multiple wells. Based on actual information of tight oil developments, the pressure interference were examined by field trail data and well spacing simulations. The real scenarios were selected to study effects of well spacing on EUR and ultimate IRR. Effects of reservoir permeability and fracture half-length on optimal well spacing were also analyzed. It was found that the decrease in Long-term EURs for different well spacings is a good indicator for well spacing optimization. Based on the reservoir simulation and economic analysis, the maximum IRR of the tight oil reservoir with permeability of 0.23mD can achieved when the well spacing is 260m. Meanwhile, the detailed results were also illustrated to show the effects of fracture half-length, reservoir permeability as well as oil price variation on IRR. The paper demonstrates an effective method and a workflow to optimize well spacing and fracture treatments design through integrating advanced multi-stage fracture modeling with discrete fracture reservoir simulation in the area of unconventional resource developments. Such optimization studies contribute to minimize operation cost and improve the economy of resource development.
利用先进的多级裂缝建模和离散裂缝油藏模拟技术优化致密油油藏井距和裂缝设计
大平台、长水平段、小井距、致密切削已成为致密油经济有效的开发手段。井距和裂缝设计是影响致密油油藏产量和内部收益率的关键参数。为了使总改造储层面积和裂缝控制储量最大化,井距和裂缝间距应足够小。但是,为了最大限度地减少邻井和附近井的重叠排水区造成裂缝冲击的可能性,避免资产溢出,井间距应该足够大。基于微裂缝数据和微地震裂缝成图结果,生成自然/水力裂缝网络,并将其输入到基于非结构化网格的离散裂缝油藏模拟模型中。其精度是根据井的生产历史进行校准的。对于每一组裂缝设计和井距,通过估算单井和多口井中间井的最终采收率(EUR)差来确定井间干扰。根据致密油开发的实际情况,通过现场跟踪数据和井距模拟,对压力干扰进行了验证。选取真实场景,研究井距对EUR和最终IRR的影响。分析了储层渗透率和裂缝半长对最佳井距的影响。研究发现,不同井距下长期EURs的减小是井距优化的一个很好的指标。通过油藏模拟和经济分析,当井距为260m时,渗透率为0.23mD的致密油油藏的IRR最大。同时,还详细说明了裂缝半长、储层渗透率和油价变化对IRR的影响。在非常规资源开发领域,通过将先进的多级裂缝建模与离散裂缝油藏模拟相结合,提出了一种优化井距和裂缝处理设计的有效方法和工作流程。这些优化研究有助于降低运行成本,提高资源开发的经济性。
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