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A Lithium Salt Accelerator for Deepwater Low-temperature Cementing: Its Acceleration Mechanism and Performance Evaluation

机译:深水低温粘合锂盐促进剂:其加速机制和性能评价

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摘要

A study on a new lithium salt accelerator was conducted in this paper aiming at the low temperature environment in deepwater cementing. The acceleration mechanism and comprehensive performance of the lithium salt accelerator were thoroughly discussed. Results show that the lithium salt accelerator can accelerate the low-temperature hydration rate of C_3S and C_2S by speeding up the rupture of protective hydration film and shortening the hydration induction period, and thereby significantly shortens the low-temperature thickening time and the 48-240 Pa transition time for the static gel strength of oil well cement slurry, dramatically improves the compressive strength at low temperatures and shows no effect on the initial consistency of cement slurry. The lithium salt accelerator shows favorable low-temperature early strength accelerating property and has no effect on the types of hydration product, which still remains the same with that of conventional oil well cement, namely the calcium silicate gel, Ca(OH)_2 crystal and a small amount of ettringite AFt crystal. But the micro-structure of the system with the lithium salt accelerator is more compact than that of conventional set cement.
机译:本文进行了对新型锂盐促进剂的研究,旨在深水胶合中的低温环境。彻底讨论了锂盐加速器的加速机制和综合性能。结果表明,锂盐促进剂通过加速保护水合膜的破裂并缩短水化诱导期,可以加速C_3S和C_2S的低温水合速率,从而显着缩短了低温增厚时间和48-240油井水泥浆料静态凝胶强度的PA转变时间显着提高了低温下的抗压强度,并对水泥浆料的初始稠度显示出没有影响。锂盐促进剂显示出有利的低温早强加速性,对水合产物的类型没有影响,其仍然与常规油井水泥的类型保持不变,即硅酸钙凝胶,Ca(OH)_2晶体和少量Ettringite Aft Crystal。但是,具有锂盐促进剂的系统的微结构比常规设定水泥更紧凑。

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