Case Study: A Fast Calculation Method on Optimizing Inflowing Control Parameters for Staged Premium Screen

Chen Yang, Zongyi Chen, Shaoxian Wang, Zhigang Qi, Peibin Gong
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Abstract

Staged premium screen technology has been widely used in Shengli Oilfield, and works as a reliable method for sectional inflow control completion in horizontal wells. The completion plan of staged premium screen were originally optimized by flow loop test, however, the test procedure is usually as long as 12 working days. Therefore, a fast calculation method with processing time of no more than 2 days is proposed. When the well bore segmentation scheme is available, screen number as well as base pipe hole density are selected as the key parameters, and are optimized from one interval to the next on the basis of inflow control characteristics formula of staged premium screen. During the optimization of each interval, the parameters which best fit the requirements of “reasonable inflow control pressure drop” and “maximum discharge area” are determined from many alternative values. G6-P15 well, designed under the guidance of fast calculation method, obtained more balanced fluid and oil production profile versus Reference Well G6-P12. So far, 15 wells have been designed by this fast method. On average, the annual decline rate of daily oil production, the annual increase rate of water cut as well as annual mean of water cut of application wells are observed to be 36.7%, 9.4% and 7.9% lower than those of reference wells, respectively, while the annual accumulation oil production of target wells is 12.2% higher than that of reference wells. These successful applications prove that the fast calculation method has provided reasonable design.
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案例研究:分段优质筛管流入控制参数优化的快速计算方法
分段优质筛管技术在胜利油田得到了广泛应用,是水平井分段控流完井的一种可靠方法。分级优质筛管完井方案最初是通过流环测试优化的,但测试过程通常长达12个工作日。为此,提出了一种处理时间不超过2天的快速计算方法。在井筒分段方案确定的情况下,以筛管数量和基管井眼密度为关键参数,根据分段优质筛管控流特性公式,逐段进行优化。在每个井段的优化过程中,从多个备选值中确定最符合“合理流入控制压降”和“最大泄油面积”要求的参数。在快速计算方法的指导下设计的G6-P15井与参考井G6-P12相比,获得了更加平衡的液产剖面。到目前为止,已有15口井采用这种快速方法设计。应用井日产油量年递减率、含水率年递减率、年平均含水率分别比参考井低36.7%、9.4%和7.9%,目标井年累积产油量比参考井高12.2%。这些成功的应用证明了快速计算方法提供了合理的设计。
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