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Strength prediction of Class G oilwell cement during early ages by electrical conductivity

机译:早期通过电导率预测G类油井水泥的强度

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The compressive strength of oilwell cement plays an important role in securing the long-term integrity of wellbore. The cement’s strength development is experimentally difficult to perform once the cement has been displaced into the wellbore. Failure to monitor its development especially during early hydration may lead to secondary cementing operation or in the worst case may damage the well. This paper proposes an empirical equation for strength prediction of Class G oilwell cement using electrical conductivity at elevated pressure up to 3,000 psi and temperature up to 65?°C during the first 24?h of hydration. The study used both porosity–strength correlations and strength–electrical properties relationship to produce predictive equation for strength of oilwell cement. The proposed equation was experimentally compared to cement samples with different water–cement ratios and curing conditions to validate the result. A good agreement is achieved between the proposed equation and the measured data. Furthermore, the strength up to 50?days can be predicted by the proposed equation.
机译:油井水泥的抗压强度在确保井眼的长期完整性方面起着重要作用。一旦将水泥置换到井眼中,水泥的强度发展在实验上将难以实现。未能监测其发展,尤其是在早期水合作用期间,可能会导致二次固井操作,或者在最坏的情况下可能会损坏油井。本文提出了一个经验方程式,用于在水化的最初24小时内,在高达3,000 psi的高压下和高达65°C的温度下使用电导率来预测G类油井水泥的强度。该研究使用孔隙度-强度相关性和强度-电气特性关系来生成油井水泥强度的预测方程。将该方程与不同水灰比和固化条件的水泥样品进行了实验比较,以验证结果。所提出的方程与测量数据之间达成了良好的一致性。此外,通过所提出的方程式可以预测高达50天的强度。

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