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CutCap Process for Surface Casing Vent Flow Repair and Prevention

机译:切割和盖子工艺,用于表面套管通风口流动修复和预防

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Thousands of new wells are being drilled each year while thousands more are being repaired or abandoned around the world.Remedial and well abandonment work is becoming increasingly important for both E&P companies and energy service companies providers as the oil and gas industry continues to recognize the financial and environmental impact,while at the same time,authorities are tightening regulations. Traditional abandonment and squeeze methods have not changed much over the past several decades which has resulted in little or no improvement on the successful repair and abandonment of wells.While improvements have been suggested and trialed,remedial work is viewed as a cost burden,and companies tend to avoid it rather than to address it,which often leads to problems occurring or reoccurring in the future. However,in Western Canada one particular technique has been successfully developed.Although not a new technology,abrasive jetting has proven to be one successful component in well repair operations in many parts of Alberta.Abrasive jetting was primarily developed for wells presenting surface casing vent flow(SCVF)problems. According to the Alberta Energy Regulators(AER),approximately one in 20 oil and gas wells in Alberta experience gas migration to surface through one of the following issues:a cemented casing string(s)with either a micro-annulus between casing and cement,a channel within the cement sheath,or a channel between the cement and the borehole wall.To remediate these possible gas migration passages,the abrasive jetting technique is used first to radially cut the casing,the cement sheath,and the formation in the horizontal plane utilizing a high-pressure sand/liquid mixture.Cutting in this manner provides full radial exposure and increases the chances of intercepting the gas flow passage.The next step is to determine the formation feed rate.Once the feed rate is determined,the proper product can be selected along with the placement technique.Micro-fine cement with slow-rate pumping is often used in the squeeze process to seal off the channels. This process is highly effective in terminating gas migration(GM)or SCVF and reducing remedial costs,saving E&P companies thousands of dollars in rig time and material costs,and adding significant value for the client.
机译:每年都在钻取成千上万的新井,而数千人正在修理或遗弃世界。由于石油和天然气行业继续认识到金融,避免遗传工作越来越重要,因为石油和天然气行业继续承认金融公司环境影响,同时,当局正在收紧规定。传统的遗弃和挤压方法在过去的几十年中没有发生过多,这导致了对井的成功修复和放弃的几十年来导致了很少或没有改善。建议和试验改进,修复工作被视为成本负担,以及公司倾向于避免它而不是解决它,这通常会导致未来发生的问题或重新驾驭。但是,在加拿大西部,一项特定的技术已经成功开发。虽然不是一种新技术,磨料喷射已经被证明是艾伯塔省许多地区的修复运营中的一个成功组成部分.Abrasive喷射主要为井呈现表面套管通气流动的井架。 (SCVF)问题。根据艾伯塔省能源调节因子(AER),艾伯塔省的20个石油和天然气井中的大约一体化通过下列问题之一来实现气体迁移到表面:胶合套管串,其中壳体和水泥之间的微环,水泥护套内的通道,或水泥和钻孔壁之间的通道。为了修复这些可能的气体迁移通道,首先使用研磨喷射技术以径向地切割水平平面中的壳体,水泥护套和地层利用高压砂/液体混合物。以这种方式加工提供全径向曝光,并增加拦截气体流动通道的机会。下一步是确定形成饲料速率。确定进料速率,适当的产品可以与放置技术一起选择。用慢速泵送的微型水泥通常用于挤压过程中以密封通道。该过程在终止天然气迁移(GM)或SCVF方面非常有效,并降低补救成本,节省成本的成本数千美元,并为客户增加了重要价值。

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