基于钻井作业期间压降和裂缝流体损失评估封堵过程的新方法

IF 3.2 3区 工程技术 Q1 ENGINEERING, PETROLEUM
SPE Journal Pub Date : 2023-11-01 DOI:10.2118/218376-pa
M. N. Borges Filho, A. Soares, Filipe Arantes Furtado, C. Scheid, L. Calçada
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引用次数: 0

摘要

在钻井作业过程中,井筒中经常会出现天然或人工裂缝。这些裂缝允许钻井液流入岩层。循环损失会增加作业成本和非生产时间,并可能威胁到油井结构的完整性。为解决这一问题,有必要了解流体在裂缝中的流动情况,并开发减少循环损失的方法。这项工作的主要贡献在于扩展了钻井液流经裂缝通道的知识,对失去循环材料(LCM)悬浮液在裂缝中的流动进行了实验研究,并通过理论分析获得了描述裂缝通道密封性的数学模型。这项工作提出了压降与流体通过裂缝的体积流量之间的相关性。为了验证该模型,物理模拟器收集了孔径为 2 毫米、5 毫米和 10 毫米、长度为 1.02 米的裂缝中的流体流动数据和压降。聚合物和硼酸钙的混合物被悬浮在用黄原胶(XG)增粘的水中。对所研究的流体进行了密度和流变特性测试。LCM 具有双峰粒度分布,配制的流体具有 Herschel-Bulkley 流变行为。利用压降、流速和流变数据,提出了压降与通过裂缝的体积流量之间的相关性。通过计算整个封堵过程中裂缝的水力直径,利用提出的相关关系来监测裂缝的封堵情况。对 LCM 悬浮液进行了过滤测试,以观察封孔颗粒对泥饼和滤液体积的影响。所提出的相关性与实验数据的拟合偏差小于 10%。利用体积流量和压降的实验数据估算了裂缝水力直径,从而可以通过时间监测裂缝的封堵过程。封堵和过滤试验表明,硼酸盐和聚合物混合物作为过滤控制剂和 LCM 是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Methodology to Evaluate the Sealing Process Based on Pressure Drop and Fluid Loss in Fractures during the Drilling Operation
Natural or artificial fractures are common in the wellbore during drilling operations. These fractures allow the flow of drilling fluid into the rock formation. The loss of circulation increases the operation’s cost and nonproductive time, which may threaten the well’s structural integrity. To overcome this problem, it is necessary to understand the flow of fluids through fractures and develop methods to mitigate the loss of circulation. This work’s main contributions are expanding the knowledge on the flow of drilling fluids through fractured channels, conducting an experimental study on the flow of suspensions of lost circulation materials (LCM) in fractures, and performing a theoretical analysis to obtain mathematical models describing fractured channels’ sealing. This work proposes a correlation between the pressure drop and the volumetric flow rate of fluid through fractures. To validate the model, a physical simulator collected fluid flow data and pressure drop in fractures with 2-mm, 5-mm, and 10-mm apertures and 1.02-m length. A blend of polymers and calcium borate was used in suspension in water viscosified with xanthan gum (XG). Density and rheological behavior tests were performed to characterize the studied fluids. The LCM had a bimodal particle-size distribution, and the formulated fluids had a Herschel-Bulkley rheological behavior. Pressure drop, flow rate, and rheological data were used to propose a correlation between pressure drop and volumetric flow rate through the fracture. The proposed correlation was used to monitor the sealing of fractures by calculating their hydraulic diameter throughout the sealing process. The LCM suspensions underwent filtration tests to observe the effects of sealing particles on the mudcake and filtrate volume. The proposed correlation fitted the experimental data with less than 10% deviation. The fracture hydraulic diameter was estimated using experimental data of volumetric flow rate and pressure drop, which made it possible to monitor the sealing process of fractures through time. The sealing and filtration tests showed that the borate and polymer blends are effective as filtration control agents and LCM.
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来源期刊
SPE Journal
SPE Journal 工程技术-工程:石油
CiteScore
7.20
自引率
11.10%
发文量
229
审稿时长
4.5 months
期刊介绍: Covers theories and emerging concepts spanning all aspects of engineering for oil and gas exploration and production, including reservoir characterization, multiphase flow, drilling dynamics, well architecture, gas well deliverability, numerical simulation, enhanced oil recovery, CO2 sequestration, and benchmarking and performance indicators.
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