裂缝辅助蒸汽驱提高采收率的敏感性分析

S. Josefin
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引用次数: 0

摘要

注汽是稠油油藏最常用的采油方法,也是最有效的热采方法之一。然而,蒸汽注入的应用也面临着许多挑战,例如意外故障、传热效率、油和蒸汽之间的接触较少等。注汽效果随着油与蒸汽接触程度的降低而降低。解决这一问题的一种方法是采用水力压裂来增加油到蒸汽的表面积。这种裂缝辅助蒸汽驱工艺是一种新兴的新技术,在注水井和生产井之间建立一条通道。本文利用商用模拟器对某水力裂缝油藏注汽效果进行了模拟和评价。本研究的重点是通过灵敏度测试找到最佳的断裂性能。还考察了蒸汽性质的影响。采用正常储层模型、水力压裂储层模型和水平注水井三种场景来说明注汽方法。与常规油藏模型相比,该模型中水力压裂的使用使采收率提高了20%。用于灵敏度测试的参数是裂缝参数,如裂缝长度和裂缝宽度,以及蒸汽性质。敏感性试验表明,在压裂辅助蒸汽驱过程中,注入压力和裂缝调度等参数对提高采收率有较大影响。压裂辅助蒸汽驱方案具有压裂进度敏感性和较高的注入压力,可获得最佳效果。研究证明,稠油油藏注汽工艺的有效性是可以提高的。它还提出了一种通过水平井注入来改善蒸汽油暴露的独特方法。本文介绍了在注汽过程中应用裂缝辅助驱油的另一种方法的效果。结合蒸汽和裂缝参数的敏感性,讨论了最佳注汽方案。这两种组合将使原油采收率比基本情景提高25-30%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sensitivity Analysis on Oil Recovery Improvement Through Application of Fracture-Assisted Steamflood
The most common recovery method for heavy oil reservoirs is steam injection, which is one of the most effective thermal recovery processes. However, the application of steam injection comes with many challenges, for instance unexpected faults, heat transfer efficiency, and less exposure between oil and steam. The effectiveness of steam injection decreases with the lower exposure of oil to steam. One way to tackle this problem is by applying hydraulic fracturing to increase the surface area of oil to steam. This fracture-assisted steam flooding process is a rising new technique in which a path is created between injection wells and production wells. In this paper, the effects of a hydraulically fractured reservoir in the steam injection process are simulated and evaluated using a commercial simulator. The focus of this research is to find the best fracture properties by sensitivity tests. The effects of the steam properties are also examined. Three scenarios are used to illustrate the steam injection method: normal reservoir model, hydraulically fractured reservoir model, and horizontal injector wells. The use of hydraulic fracture from the model results in a 20% increase of oil recovery compared to the normal reservoir model. The parameters used for sensitivity tests are fracture parameters such as fracture length and fracture width, and steam properties. The sensitivity tests indicate that parameters such as injection pressure and fracture scheduling have a big impact on increasing the oil recovery during the fracture-assisted steam flooding process. The optimum result is generated from the fracture-assisted steam flooding scenario with a sensitivity of fracture schedule and higher injection pressure. This study proves that improvements in the effectiveness of the steam injection process in heavy oil reservoirs can be achieved. It also presents a unique approach to improve steam-oil exposures by applying horizontal injector wells. This paper introduces the effect of an alternative approach to apply fracture-assisted flooding in the steam injection process. The paper also discusses the best scenario for steam injection by combining the sensitivity of steam and fracture parameters. Both combinations will affect the increase of oil recovery by 25-30% from the base case scenario.
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