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首页> 外文期刊>Journal of Multiscale Modelling >MULTISCALE MODELING OF THE POROELASTIC PROPERTIES OF VARIOUS OIL-WELL CEMENT PASTES
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MULTISCALE MODELING OF THE POROELASTIC PROPERTIES OF VARIOUS OIL-WELL CEMENT PASTES

机译:各种油井水泥浆体孔隙弹性特性的多尺度模拟

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摘要

Evaluation of the poroelastic properties of oil-well cement paste is essential for prediction of the performance of the cement sheath during the life of a well. A multiscale homogenization model is used to evaluate the poroelastic properties of different classes of oil-well cement paste. The model has been calibrated in a previous work based on the results of a laboratory study on a hardened class G cement paste. A hydration model is used to evaluate the volume fractions of different microstructure phases of cement paste based on the chemical composition of clinker and the water-to-cement ratio. Typical chemical compositions of API class A to class H oil-well cements with their corresponding water-to-cement ratios are used to evaluate the poroelastic parameters such as drained bulk modulus, Biot coefficient, Skempton coefficient, etc. The results show that the difference in the chemical compositions of these cements has not an important effect on the variations of the poroelastic properties. Contrarily, the water-to-cement ratio has an important effect on the variations of these parameters.
机译:对油井水泥浆的孔隙弹性特性的评估对于预测井寿命期间水泥护套的性能至关重要。使用多尺度均质化模型评估不同类型油井水泥浆的孔隙弹性特性。该模型已经在先前的工作中基于对硬化的G类水泥浆的实验室研究结果进行了校准。基于熟料的化学组成和水灰比,采用水化模型评估水泥浆不同微观结构相的体积分数。使用API​​ A级到H级油井水泥的典型化学组成及其相应的水灰比来评估孔隙弹性参数,如排水体积模量,比奥系数,Skempton系数等。结果表明,两者之间存在差异这些水泥的化学组成的变化对孔隙弹性的变化没有重要影响。相反,水灰比对这些参数的变化具有重要影响。

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