Advanced Loss Circulation Spacer System in UAE Enables Successful Cementation of 9 5/8" Casing and Required Zonal Isolation during Severe Losses

A. Hassan, Ahmed Rashed Alaleeli, Ahmedagha Hamidzada, A. J. D. Barros, Yousif Al Katheeri, Fatima Bin Tarsh, G. Aliyeva
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引用次数: 1

Abstract

It is common to be faced with severe losses prior to cementing the 9 5-8 in. intermediate casing in an offshore field in UAE. Intermediate casing covers weak zones and as a results there is always a high risk of formation breakdown and induced losses while running the casing and before it reaches intended setting point. The average losses experienced during drilling the 12 1-4 in. hole may exceed 100 BPH. The main challenge in the case reviewed in this paper was that the formation was fracturing during casing running, compromising ability to achieve proper zonal isolation and successful cement job execution. To address the challenge a special LCM Spacer system was proposed, designed to minimize or eliminate the losses during the primary cement job by offering superior sealing capabilities. This LCM Spacer system can easily mitigate loss circulation while cementing, based on ultra-low invasion technology forming a barrier across loss zones. It creates a film across formation walls and reduces the loss circulation ranging from partial to total losses on permeable, fragile, weak formation, natural fractures and depleted reservoirs. It also improves wellbore stability and ECD’s along the wellbore and expected loss zones. The LCM Spacer system was designed and implemented based on the well conditions, design guidelines and previously recorded global success of the system applied in similar applications.
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阿联酋先进的漏失循环隔离系统能够在严重漏失时成功固井9 5/8”套管,并实现层间隔离
在9 - 5- 8in井眼固井之前,通常会面临严重的漏失。阿联酋海上油田的中间套管。中间套管覆盖薄弱层,因此,在套管下入过程中,在套管到达预定坐封点之前,地层破裂和漏失的风险总是很高。钻进12 - 1-4英寸时的平均损失。钻孔可能超过100 BPH。该案例的主要挑战是,在套管下入过程中,地层发生了压裂,影响了层间隔离和固井作业的成功实施。为了应对这一挑战,开发商提出了一种特殊的LCM隔离系统,旨在通过提供卓越的密封能力,最大限度地减少或消除一次固井作业期间的损失。基于超低侵入技术,该LCM隔离系统可以在固井过程中轻松减少漏失循环。它在储层壁上形成一层膜,减少了可渗透、脆弱、脆弱地层、天然裂缝和衰竭储层的部分或全部漏失。它还提高了井筒稳定性和沿井筒和预期漏失区域的ECD。LCM隔离系统的设计和实施是基于井况、设计指南以及该系统在类似应用中的全球成功记录。
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