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Application of Fast-SAGD in Naturally Fractured Heavy Oil Reservoirs: a Case Study

机译:快速SAGD在自然骨折重油储层中的应用 - 以案例研究

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Steam injection process has been considered for a long time as an effective method to exploit heavy oil resources. Over the last decades, Steam Assisted Gravity Drainage (SAGD) has been proved as one of the best steam injection methods for recovery of unconventional oil resources. Recently, Fast-SAGD, a modification of the SAGD process, makes use of additional single horizontal wells alongside the SAGD well pair to expand the steam chamber laterally. This method uses fewer wells and reduces the operational cost compared to a SAGD operation requiring paired parallel wells one above the other. The efficiency of this new method in naturally fractured reservoir is not well understood. Furthermore, how operational parameters could affect the efficiency of this method is a topic of debate. In this study, Fast-SAGD is compared through numerical reservoir simulations with standard SAGD in an Iranian naturally fractured heavy oil reservoir and additionally some operational parameters including initiating time of steam injection in offset well, number of cycles assuming the same total period of steam injection, offset injection pressure, elevation of offset well from the bottom of reservoir and vertical distance of production and injection SAGD well pairs have been evaluated in Fast-SAGD process. The operational parameters have been optimized based on Recovery Factor (RF) and economical points. The results of this study demonstrated the exceptional performance of Fast-SAGD process in naturally fractured reservoirs and the RFand thermal efficiency of Fast SAGD are enhanced tremendously comparsed to SAGD. In addition, the results indicated that the most important parameters that should be optimized before Fast-SAGD is initiating time of steam injection in offset wells. This study reveals improved efficiency and lower extracting costs for heavy oil in naturally fractured reservoirs applying Fast- SAGD process. Also it is indicated that optimization of operational parameters significantly improves Fast-SAGD performance in such reservoirs.
机译:蒸汽注入方法已被认为是一个很长一段时间,以利用重油资源的有效方法。在过去的几十年中,蒸汽辅助重力泄油(SAGD)已被证明是对的非常规石油资源回收最好的蒸汽注入方法之一。最近,快速SAGD,在SAGD工艺的修改,使得使用额外的单个水平井旁边的SAGD井对侧向扩大蒸汽室。此方法使用更少的孔中,并减少了与需要成对的平行孔一个在另一个之上一个SAGD操作的操作成本。在天然裂缝储层这种新方法的效率还不是很清楚。此外,如何操作参数可能影响该方法的效率是一个有争议的话题。在这项研究中,快速SAGD通过在一个伊朗天然裂缝稠油油藏标准SAGD油藏数值模拟和另外一些操作参数包括启动蒸汽喷射的时间偏移以及相比,假定蒸汽注射相同的总时间段的周期数,偏移注射压力,从储液器和的生产和注入SAGD井对垂直距离的底部偏移井标高已在快速SAGD过程进行了评价。基于恢复因素(RF)和经济的点的操作参数进行了优化。本研究的结果证明快速SAGD过程的天然裂缝储层和快速SAGD的RFand热效率优异的性能被增强极大comparsed到SAGD。此外,该结果表明,应该优化最重要的参数之前快速SAGD正在启动蒸汽喷射的时间偏移井。这项研究揭示了提高效率和降低应用快SAGD过程中天然裂缝储层重油提取费用。也则表示操作参数的优化显著提高在这样的储层快速SAGD性能。

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