裂缝性碳酸盐岩油藏水平井筒流入模型的综合验证

N. Morozovskiy, R. Kanevskaya, A. A. Pimenov, V. Kolesov, Lubov Yuryevna Zasukhina
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引用次数: 0

摘要

开发裂缝性油藏的实践表明,井-储系统的描述往往与裂缝性系统的经典过滤理论(Warren-Root等)所预测的行为不相符。在分析水平井作业时,这一事实非常明显,因为在水平井作业中,流入剖面沿井的分布具有明显的非均质性。因此,储层不能像一个均匀系统一样表示,并且预测井的运行需要使用新的方法来描述储层系统。在东西伯利亚某凝析油气田的井运行分析过程中,发现用传统方法得到的预测参数有偏差。在这方面,详细分析了之前进行的测井和试井,以完善水平井流入模型。在初始阶段,对参考井的操作进行了全面分析。这些井有最广泛的研究(PTA、PLT、先进的测井复合体、微成像仪)。该分析修正了入流模型的描述方法。此外,该结果可扩展到现有水平井生产的其余部分。在分析过程中,我们的团队发现实际的过滤模型与早期关于该油藏运行的想法有很大的偏差。结合参考井的多种研究方法,揭示了局部压裂段对整个水平井生产的主导作用。在此基础上,改进了油井产能描述和作业预测的方法。此外,还发现了储层流体脱气对油井产能的显著影响,并确定了目标井底压力的范围。将获得的参考井过滤模型的知识应用于整个勘探水平井,从而可以识别整个油田的地层产能模式。本文提出了一种基于PLT、试井和裸眼测井相结合的方法来描述非均匀裂缝性碳酸盐岩储层打开条件下的水平井作业。此外,作者还研究了各种机器学习算法,以使裸眼测井解释结果适应PLT数据。为了预测水平井的发射参数和流量动态,在均质各向同性油藏中抛弃过滤模型,采用局部裂缝段的流入模型是合理的。这将有助于明确当前油井的生产水平,优化油井操作模式,并为实施地质和技术措施提供建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive Substantiation of a Horizontal Wellbore Inflow Model in a Fractured Carbonate Reservoir
The practice of developing fractured reservoirs suggests that the description of the well-reservoir system often does not correspond to the behavior predicted by classical filtration theories for fractured systems (Warren-Root and others). This fact is very clear when analyzing the operation of horizontal wells, in which significant heterogeneity of the distribution of the inflow profile along the well. Thus, the reservoir cannot represents like a homogeneous system, and forecasting the operation of wells requires the use of new methods for describing reservoir systems. In the course of analyzing the operation of wells in one of the oil and gas condensate fields in Eastern Siberia, a deviation from the forecast parameters obtained by the traditional method is noted. In this regard, a detailed analysis of previously performed logs and well tests in order to refine the model of inflow to horizontal wellbores is detailed. At the initial stage, was performed a comprehensive analysis of the operation of the reference wells. These wells have the most extensive set of studies (PTA, PLT, advanced complex of well logging, micro imagers). The analysis revised the approach to the description of the inflow model. Further, the results scaled to the rest of the existing fund of producing horizontal wells. In the course of the analysis, our team revealed a significant deviation of the actual filtration model from earlier ideas about the operation of this reservoir. According to the results of combining various research methods in the reference wells, we revealed the predominant effect of local fractured intervals on the operation of the entire horizontal well. In this regard, the approach to the description of well productivity and the forecast of their operation revised. In addition, authors identified a significant influence of the degassing of reservoir fluid on well productivity, and the range of the target bottomhole pressure was determined. The acquired knowledge about the filtration model of reference wells was scaled for the entire exploration horizontal wells, which made it possible to identify patterns in the formation of productivity in the entire field. An approach has been developed to describe the operation of horizontal wells under the conditions of opening an unevenly fractured carbonate reservoir, based on a combination of PLT, well test and open-hole well logging. Additionally, authors studied various machine-learning algorithms to adapt the results of the interpretation of open-hole logging to PLT data. To predict the launch parameters and dynamics of horizontal well flow rates, the rejection of the filtration model in a homogeneous isotropic reservoir in favor of the inflow model to local fractured intervals is justified. This will make it possible to clarify the current levels of production in wells, optimize well operation modes, and make recommendations for conducting geological and technical measures.
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