Optimizing Economic Number of Transverse Fractures in Horizontal Well: A Systematic Design for Maximum Tight Gas Recovery

Saheed Olawale Olayiwola, M. Rahman
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引用次数: 3

Abstract

Over the last two decades, the worldwide demand for energy has been met with substantial increase in the oil supply which causes fall in oil price. However, the price of gas has been stabled despite increased demand for gas as a major source of energy. The production from gigantic conventional reservoirs has also reduced which has led to the dependence on current reserves to meet the demand. This increase in demand for gas has led to the increase in activities of research and development with an objective to explore and exploit unconventional resources as an economic and effective cost. Hydraulic fracturing has been proven to be one of the most viable means used to exploit the unconventional resources (tight gas and shale gas formations). Thus, evaluating the performance of the well post-fracturing is necessary to determine the economic viability of the recovery. Inaccurate evaluation of the post-fracturing can lead to either overestimation or underestimation of the design performance particularly from transversely fractured horizontal well. This work includes convergence skin effect that occurs at every intersection of fractures and horizontal section of the well which can account for wide variation of the post treatment in the field from the simulation model. The variation in the skin is a function of fracture conductivity and the number of transverse fractures. This work has developed a hydraulic fracture optimization model which shows the optimal design point, that is, the optimal number of transverse fractures estimated from the economic analysis and gives optimal production rate. This optimal number of transverse fractures estimated from this work is cost effective. This model can lead to an increase in accuracy of optimum design.
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水平井横向裂缝经济数量优化:致密气最大采收率的系统设计
在过去的二十年里,全球对能源的需求得到了满足,石油供应大幅增加,导致石油价格下跌。然而,尽管天然气作为一种主要能源的需求有所增加,但天然气的价格一直保持稳定。大型常规油藏的产量也在减少,这导致了对现有储量的依赖来满足需求。天然气需求的增加导致了研究和开发活动的增加,目的是勘探和开发非常规资源,作为经济和有效的成本。水力压裂已被证明是开发非常规资源(致密气和页岩气地层)最可行的方法之一。因此,评估压裂后油井的性能对于确定采收率的经济可行性是必要的。对压裂后效果的不准确评价可能导致对设计性能的高估或低估,尤其是横向压裂水平井。这项工作包括发生在裂缝和水平井段交叉处的收敛集肤效应,这可以解释与模拟模型相比现场后期处理的巨大差异。皮肤的变化是骨折导电性和横向骨折数量的函数。本文建立了水力裂缝优化模型,通过经济分析估计出横向裂缝的最优数量,并给出了最优产量。从这项工作中估计的最佳横向裂缝数量具有成本效益。该模型可提高优化设计的精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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