High Density Foamed Cement Application for Channeling and Behind-the-Casing Flows Minimization in the Production Zone

A. V. Fomenkov, Ilya Pinigin, Mikhail Tsibulsky, Dmitry Yurievich Terentyev, Artem Alexandrovich Fedyanin
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Abstract

This article describes the application of relatively high-density foamed cement for cementing wells in the Volga and Urals region. Good cementing practices with high density or conventional density cement slurry is required to ensure mud displacement in fluid saturated intervals of reservoir formations (Benge et al; 1982). With this requirement met, the cement column should circumferentially cover the annulus at this very interval which is exposed to the highest loads. However, due to limited physical and mechanical properties of conventional cement slurries in both liquid and solid state, in certain cases conventional slurries do not solve the problems encountered by the Customer, namely elimination of annular flow between the casing and cement sheath. High-density foamed cement is considered as an improved alternative to conventional cement slurries, and results in a high quality and durable sealing of gas and oil saturated production zones for the life of the well. Proprietary software and process equipment are used for the mixing of the foamed cement slurry with a variety of foaming properties. This process enables the use of a base cement slurry with higher density (up to 2.1 g/cm3) for delivering foamed cement slurries in a wide range of densities. To avoid possible cross flows behind the casing, pilot tests were conducted, where a conventional cement slurry (1.80–1.90 g/cm3) was replaced with a high-density foamed cement slurry with equivalent density with a foam quality of approx. 10% making the cement sheath elastic with improved adhesion to both the casing string and the formation (Spaulding et al; 2018). Pilot tests, incorporating the cementing of several production casings, were conducted where only foamed cement slurries with various foam quality were used in the entire cementing interval. No conventional (non-foamed) cement systems were used in these cases.
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高密度泡沫水泥在生产区窜管和套管后流最小化中的应用
本文介绍了相对高密度泡沫水泥在伏尔加河和乌拉尔地区固井中的应用。需要使用高密度或常规密度水泥浆进行良好的固井作业,以确保在储层流体饱和层段的泥浆置换(Benge等;1982)。在满足这一要求的情况下,水泥柱应在暴露于最高载荷的这一段段向周向覆盖环空。然而,由于常规水泥浆在液体和固体状态下的物理和机械性能有限,在某些情况下,常规水泥浆不能解决客户遇到的问题,即消除套管和水泥环之间的环空流动。高密度泡沫水泥浆被认为是传统水泥浆的改进替代品,可以在井的整个生命周期内对油气饱和生产区域进行高质量和持久的密封。专有软件和工艺设备用于混合具有多种发泡性能的泡沫水泥浆。该工艺可以使用密度更高(高达2.1 g/cm3)的基础水泥浆来输送密度范围广的泡沫水泥浆。为了避免套管后面可能出现的交叉流动,进行了先导试验,将传统的水泥浆(1.80-1.90 g/cm3)替换为高密度泡沫水泥浆,其密度等效,泡沫质量约为。10%使水泥环具有弹性,提高了与套管柱和地层的附着力(Spaulding等;2018)。试点测试包括对几个生产套管进行固井,在整个固井段中只使用不同泡沫质量的泡沫水泥浆。在这些情况下,没有使用常规(非发泡)水泥系统。
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