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30 Years of Continuous Coiled Tubing Modeling Software Development and Field Applications Creating New Capabilities

机译:30年连续盘绕管材建模软件开发和现场应用创造新功能

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During the last three decades a coiled tubing (CT) modeling software package has been continuously developed to assist in the planning and executing of global CT operations. The first models were steady- state. In the past decade these models have been extended to consider transient effects of operations as they are executed. These models will also be used in the not-so-distant future to automate CT operations. In this paper, a review of all these models is presented for the first time. The development of a computer program was initiated in the early 1980s to help understand the downhole flow and pressure conditions during CT operations. Utilizing multi-phase rheological and frictional correlations obtained from laboratory flow loop testing, the CT flow model was extensively validated against global field data. Later, CT force and stress analysis models, considering such effects as the specific well geometry, mechanical friction, CT size, shape and material strength, were developed to predict lateral reach and assist in preventing downhole CT failures. While the most common and simplest approach within the industry is still to use steady-state models, in practice, the downhole conditions during CT operations, such as well cleaning, well unloading, well control, stimulation, cementing, underbalanced drilling with nitrified fluid, etc., are transient. Consequently, the steady-state models have been extended to account for downhole transient effects at the pre-planning and execution stages of CT operations. In addition, with the advent of the state-of-the-art CT telemetry systems, it is possible to acquire the downhole data in real time and use the transient CT software model to automate and optimize CT operations, increasing their safety and efficiency. A review is presented for the first time about the steady-state and transient models included in the CT software model, with details about each model and how they performed during 30 years of operations. Results and discussions regarding the extensive validation of the software against laboratory and field data are also presented. Several field cases from around the world help illustrate the transient nature of CT operations and the benefits of using the transient simulation in the pre-planning and execution stages of these operations. The paper presents the results from 30 years of global experience with the CT modeling software program. The mathematical models, validation against laboratory and field data, verification against other models available in literature, and case histories are described. The current trends within the industry are leading to a shortage of experienced CT field engineers, so the use of CT software models to increase the efficiency, compliance and safety of CT operations has never been as important as now.
机译:在过去的三十年中,连续开发了一个盘绕的管道(CT)建模软件包,以帮助计划和执行全局CT操作。第一个模型是稳定的。在过去的十年中,这些模型已经扩展到考虑操作的瞬态影响。这些模型也将用于非远程未来以自动化CT操作。在本文中,首次介绍了对所有这些模型的审查。计算机程序的开发在20世纪80年代初开始,以帮助了解CT操作期间的井下流动和压力条件。利用从实验室流回路测试获得的多相流变和摩擦相关性,CT流模型广泛地针对全局现场数据验证。后来,CT力和应力分析模型,考虑到这种效果作为特定的井几何形状,机械摩擦,CT尺寸,形状和材料强度,以预测横向覆盖并有助于防止井下CT故障。虽然行业内最常见和最简单的方法仍然是在实践中使用稳态模型,但在CT操作期间的井下条件,例如清洁,井卸载,良好的控制,刺激,粘合,底层钻孔,具有硝化的流体,等等,是瞬态的。因此,已经扩展了稳态模型以考虑CT操作的预先规划和执行阶段的井下瞬态效果。此外,随着最先进的CT遥测系统的出现,可以实时获取井下数据,并使用瞬态CT软件模型自动化和优化CT操作,提高其安全性和效率。关于CT软件模型中包含的稳态和瞬态模型的第一次介绍了审查,其中有关于每个模型的详细信息以及它们在30年的操作期间执行的详细信息。还提出了关于对实验室和现场数据进行广泛验证的结果和讨论。来自世界各地的几个现场案例有助于说明CT操作的瞬态性质以及在这些操作的预先规划和执行阶段中使用瞬态模拟的效益。本文介绍了30年的全球经验与CT建模软件计划的结果。描述了对实验室和现场数据的数学模型,验证文献中可用的其他模型以及案例历史。行业内的目前趋势导致经验丰富的CT现场工程师短缺,因此使用CT软件模型提高CT操作的效率,合规性和安全性从未如此重要。

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