利用新型流入控制装置(icd)表皮方程优化原油采收率

C. Uche, B. Obah, S. Onwukwe, C. Anyadiegwu
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引用次数: 0

摘要

流入控制装置(icd)的开发是为了避免主要在非均质地层中的长水平井出现锥形问题,但会造成一些额外的压降,不利于提高产量。这种速率的降低被认为是对水平井产能的损害。因此,配备ICD的水平井需要通过确定每个ICD喷嘴尺寸造成的表皮来预先量化其产能。这将有助于避免在纠正水平井干预上花费额外的费用。许多作者提出了可用于估计损伤、部分完井、斜井和射孔引起的表皮的方程。目前还没有作者提供一个皮肤方程,可以用来估计使用流入控制装置可能导致的可采损失和产能损失。在这项工作中,采用了一个包括水平井流入控制装置的三维数值模型,研究了不同尺寸的ICD喷嘴的储层和生产性能。不同喷嘴尺寸造成的不同产能损失被视为表皮,0.002ft2的ICD喷嘴流面积估计为零表皮。因此,推导了一个简单的公式,用于计算由于流体通过ICD喷嘴进入受限而导致的表皮。推导出的方程与表皮方程偏差较小,用于选择合适的喷嘴尺寸,以优化水平井的产量和采收率。关键词:流入控制装置
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing oil recovery using new inflow-control devices (ICDs) skin equation
Inflow-control devices (ICDs) were developed to avoid coning problems in long horizontal wells mainly in heterogenous formations, but cause some additional drawdown which does not contribute to rate increase. This rate reduction is seen to be impairment to the productivity of horizontal wells. Therefore, horizontal wells that are equipped with ICDs require a pre-quantification of their productivity by determining skin caused by each ICD nozzle size. This will help prevent additional expenditure that will be spent for a corrective horizontal well intervention.  Many authors have proposed equations that can be used to estimate skin due to damage, partial completion, slanted well and perforation. No author has provided a skin equation that can be used to estimate recoverable and productivity loss that may result from the use of inflow control devices. In this work, a 3D numerical model which includes inflow control devices along horizontal wells was used to investigate reservoir and production performances of various ICD nozzle sizes. Different productivity losses from different nozzle sizes were seen as skin and a 0.002ft2 ICD nozzle flow area estimated to have a zero skin. Consequently, a simple equation for calculating this skin due to restricted fluid entry through ICD nozzles was derived. The derived equation which shows insignificant deviation from skin equation is then used for selecting the right nozzle size for production and recovery optimization from horizontal wells. Key words: Inflow control device
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