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Study on the performance and mechanism of accelerators LSA-1 and LSA-2 for deepwater well cementing at low temperatures

机译:LSA-1和LSA-2促进剂在低温深水固井中的性能及机理研究

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There are abundant hydrocarbon resources in the deepwater region, so the exploration and development of deepwater oil and gas has become an important strategy for the Chinese petroleum industry. However, well cementing in deepwater, especially the cementing of the surface casing, is challenged due to the low temperature, which requires proper cementing accelerators to make the cement have certain strength at the early stage. Aiming to enhance the cementing quality of the surface casing, two kinds of lithium salt accelerators named LSA-1 and LSA-2 were developed in our early works based on the effects of different salts on oil well cement at low temperatures. In this paper, a comprehensive set of experiments was designed to test the effects of LSA-1 and LAS-2 on the Class-G oil well cement, including observations and measurements of the cement hydration products, the hydration heat and the developments of the static gel strength and the compressive strength. Based on these experiments, we discussed the mechanisms and performances of these two lithium salt accelerators at low temperatures. The experiment results indicate that both LSA-1 and LSA-2 can accelerate the hydration rate by advancing the hydration acceleration period and result in the earlier generation of Ca(OH)(2) and AFt. They can also induce the cement hydration products to form regular and compact gel structures, which contributes to the development of the static gel strength and the compressive strength of cement slurry at the early stage. Moreover, the two lithium salt accelerators have the characteristic of low hydration heat. This is helpful to reconcile the contradiction between the development of cement early compressive strength and the hydration heat, which can help to avoid channeling and hydrate decomposition in the strata containing gas hydrate. In general, LSA-2 has a stronger effect on accelerating hydration of oil well cement, while LSA-1 has less impact on cement hydration heat. Therefore, both LSA-1 and LSA-2 are qualified to serve as low-temperature accelerators for deepwater cementing, which are able to meet the diverse requirements of the deepwater low-temperature environment and the field cementing operation. (C) 2016 Elsevier B.V. All rights reserved.
机译:深水地区油气资源丰富,因此深水油气勘探开发已成为中国石油工业的重要战略。然而,由于温度低,在深水中进行固井,尤其是表层套管的固井受到了挑战,这需要适当的固井促进剂以使水泥在早期具有一定的强度。为了提高表层套管的固井质量,我们在早期工作中根据不同盐对低温油井水泥的影响开发了两种锂盐促进剂,分别为LSA-1和LSA-2。本文设计了一套全面的实验来测试LSA-1和LAS-2对G级油井水泥的影响,包括对水泥水合产物的观察和测量,水化热以及水泥水合物的发展。静态凝胶强度和抗压强度。基于这些实验,我们讨论了这两种锂盐促进剂在低温下的机理和性能。实验结果表明,LSA-1和LSA-2均可通过延长水合加速时间来加速水合速率,并导致Ca(OH)(2)和AFt的产生较早。它们还可以诱导水泥水合产物形成规则而致密的凝胶结构,从而有助于早期阶段静态胶凝强度和水泥浆抗压强度的发展。而且,两种锂盐促进剂具有低水合热的特性。这有助于调和水泥早期抗压强度的发展与水化热之间的矛盾,从而有助于避免在含天然气水合物的地层中窜流和水合物分解。通常,LSA-2对加速油井水泥水化的作用较强,而LSA-1对水泥水化热的影响较小。因此,LSA-1和LSA-2均可用作深水固井的低温促进剂,能够满足深水低温环境和现场固井作业的各种要求。 (C)2016 Elsevier B.V.保留所有权利。

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