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Experimental investigation of the early-age mechanical behaviour of oil-well cement paste

机译:油井水泥浆早期机械行为的实验研究

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The knowledge of the behaviour of oil-well cement paste from the early age to the hardened state is important in predicting the performances of the cement sheath in oil/gas wells, specially for prediction of the risk of micro annulus creation between the cement sheath and the rock formation or the casing. Characterization of the early-age mechanical behaviour is of particular importance, because during the well construction, the cement sheath is submitted to various mechanical loadings when the cement paste is not completely hydrated, as for example during a casing test. In this paper, the early-age mechanical behaviour of a class G cement paste is studied experimentally. A specially designed experimental device is used to investigate the mechanical behaviour of cement paste from the first hour of hydration, under stress states close to in-situ conditions. The macroscopic shrinkage of the cement paste as well as its stress-strain response under oedometric loading are studied for various pressures during hydration, from 0.3 to 45 MPa, and for hydration temperatures from 7 to 30 degrees C. These relatively low temperatures are used to slow down the hydration rate. The experimental results show that the macroscopic shrinkage increases significantly with the pressure during hydration. When submitted to a mechanical loading cycles at a given age, the cement paste hydrated under lower pressures, corresponding to shallower depth, exhibits higher deformability, showing a higher risk of creation of a micro-annulus during the mechanical loadings, as for example during a casing test. The experimental results clearly show the influence of the loading history on the mechanical behaviour of the cement paste at a given age. The oedometric experiments are associated with UCA (Ultrasonic Cement Analyser) and isothermal calorimetry experiments for a deeper insight into the behaviour of early age cement paste.
机译:从早年到硬化状态的油井水泥浆料的行为知识对于预测油/气井水泥鞘的性能,特别是用于预测水泥护套和水泥鞘之间的微环的风险岩层或套管。早期机械行为的表征特别重要,因为在井结构期间,当水泥浆料未完全水合时,水泥护套被提交到各种机械负载,例如在壳体测试期间。在本文中,通过实验研究了G类水泥浆的早期力学行为。专门设计的实验装置用于研究水泥浆料从水合的第一小时的力学行为,在接近原位条件下的应力状态下。研究水泥浆料的宏观收缩以及其在水合过程中的各种压力下的各种压力,从0.3〜45MPa和7-30℃的水化温度进行研究。这些相对低的温度用于减缓水合率。实验结果表明,宏观收缩在水合过程中的压力显着增加。当在给定时期提交到机械装载循环时,在较低压力下水合的水泥浆料,对应于较浅的深度,表现出更高的可变形性,显示在机械载荷期间产生微环的风险更高,例如在A期间套管测试。实验结果清楚地显示了装载史对给定年龄的水泥浆料的力学行为的影响。 OEDometric实验与UCA(超声波水泥分析仪)和等温热量测定实验相关,以更深地洞察早期水泥浆料的行为。

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