Robust Leakage Modeling for Plug and Abandonment Applications

M. Ramadan, S. Salehi, C. Teodoriu
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引用次数: 12

Abstract

Oil and gas wells that require to be shut off forever, after depleting their reserves, need to be plugged and abandoned. Plug and Abandonment (P&A) operations induce many arduous challenges worldwide. The aim of P&A is to isolate and prevent fluid leakage in the wellbore in such a way that all fluids are contained in their formation for an undefined time. Failure of P&A in isolating and preventing fluid leakage can jeopardize the well integrity. Cement plugs that are used in this operation play a crucial role in maintaining the well integrity. Cement is considered as a porous medium that has an ultra-low permeability that can be achieved when some additives are used in the cement slurry to reduce its permeability and pore space. The cement plug may deteriorate with time under harsh downhole conditions, such as high pressure and temperature and exposure to different fluids. Cement plug deterioration will result in increasing the cement permeability or the overall permeability by creating channels or microannuli. In this study, several scenarios are presented for gas leakage through cement plugs. In these leakage scenarios, the differential pressure across the cement plug was varied. The aim of generating these scenarios is to investigate the current required cement plug length. In each scenario, four different permeability values were used to assess the risk associated with each value. In addition, the cement plug length was varied to investigate how the cement plug length is going to help ensure good well integrity. The leakage scenarios presented revealed that longer cement plugs have a longer leakage time. In addition, the results show an increase of leakage time as microannulus gap permeability decreases. Differential pressure exerted on the cement plug have a strong effect on the leakage time. To achieve a long term well integrity in P&A phase, an ultra-low permeable cement plug with excellent bonding, longer cement plug, and a lower differential pressure across the cement must be considered.
堵塞和废弃应用的鲁棒泄漏建模
石油和天然气井在耗尽储量后需要永远关闭,需要堵塞和废弃。封堵弃井(P&A)作业在全球范围内都面临着许多艰巨的挑战。弃井作业的目的是隔离和防止井筒中的流体泄漏,使所有流体在不确定的时间内都被密封在地层中。封堵和防止流体泄漏的弃井作业失败会危及油井的完整性。该作业中使用的水泥塞在保持井的完整性方面起着至关重要的作用。水泥被认为是一种具有超低渗透率的多孔介质,通过在水泥浆中加入一些添加剂来降低其渗透率和孔隙空间,可以达到超低渗透率的目的。在恶劣的井下条件下,如高压、高温和暴露于不同的流体中,水泥塞可能会随着时间的推移而变质。水泥塞的恶化会通过形成通道或微环空导致水泥渗透率或整体渗透率的增加。在本研究中,提出了几种通过水泥塞发生气体泄漏的情况。在这些泄漏情况下,水泥塞上的压差是不同的。生成这些场景的目的是研究当前所需的水泥塞长度。在每种情况下,使用四个不同的渗透率值来评估与每个值相关的风险。此外,还对水泥塞长度进行了调整,以研究水泥塞长度如何有助于确保良好的井完整性。研究结果表明,水泥塞越长,渗漏时间越长。此外,泄漏时间随着微环隙渗透率的降低而增加。施加在水泥塞上的压差对泄漏时间有很大影响。为了在弃井阶段实现井的长期完整性,必须考虑具有良好粘结性的超低渗透水泥塞、更长的水泥塞和更低的水泥压差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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