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抗腐蚀水泥的研究和应用 被引量:2
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作者 安策 《石油钻采工艺》 CAS CSCD 北大核心 1989年第1期23-28,共6页
硫酸盐含量高的洛河地层水严重腐蚀看长庆油田陇东地区的油井套管,造成油井寿命降低,影响原油生产为解决这一问题,采用膨润土G级低密度水泥封隔洛河水层,起到了较好的防腐效果。本文着重论述膨润土G级低密度水泥的组成及其抗腐蚀能力。
关键词 抗腐蚀水泥 水泥
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矿渣抗腐蚀水泥的性能评价 被引量:2
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作者 杨雪 《科学技术与工程》 北大核心 2012年第6期1390-1392,1396,共4页
随着油田的开发,地下流体对水泥石的腐蚀更加严重。通过在G级水泥中添加矿渣,可提高水泥石的抗腐蚀性。加入矿渣的大连G级水泥浆表观黏度下降,稠化时间缩短,水泥石的抗压强度降低,但水泥石强度发展均匀,未出现强度衰退的现象。加入的矿... 随着油田的开发,地下流体对水泥石的腐蚀更加严重。通过在G级水泥中添加矿渣,可提高水泥石的抗腐蚀性。加入矿渣的大连G级水泥浆表观黏度下降,稠化时间缩短,水泥石的抗压强度降低,但水泥石强度发展均匀,未出现强度衰退的现象。加入的矿渣填充在水泥石的孔隙之间,参与水化反应;生成大量的针状的钙钒石,使得水泥石孔隙减小,抑制腐蚀性离子的侵入,从而提高水泥石的抗腐蚀性。 展开更多
关键词 矿渣 抗腐蚀水泥 抗压强度 水泥
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抗腐蚀低密度水泥浆体系的研究 被引量:2
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作者 杨远光 廖刚 +1 位作者 郭小阳 张玉隆 《钻井液与完井液》 CAS 1999年第4期5-10,共6页
分析了地层水腐蚀油井水泥的机理,并通过大量试验研究,开发出了密度为1.30—1.50 g/cm^3的低密度水泥浆体系。同时在模拟腐蚀性地层水中,对该体系水泥浆凝结硬化形成的水泥石试件的耐久性和浆体的综合工程性能进行了评价。结果表明,该... 分析了地层水腐蚀油井水泥的机理,并通过大量试验研究,开发出了密度为1.30—1.50 g/cm^3的低密度水泥浆体系。同时在模拟腐蚀性地层水中,对该体系水泥浆凝结硬化形成的水泥石试件的耐久性和浆体的综合工程性能进行了评价。结果表明,该低密度水泥浆体系耐地层水腐蚀能力强,综合工程性能良好,可满足易漏浅井防止腐蚀性地层水腐蚀套管外壁的固井要求。 展开更多
关键词 抗腐蚀低密度水泥浆体系 研究 地层水 套管腐蚀 抗腐蚀 性能 固井 油气井
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丁苯胶乳(SBRL)的改性和胶乳水泥抗腐蚀性能
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作者 李风 《山东化工》 CAS 2015年第2期22-26,共5页
如何提高水泥石抗CO2腐蚀的能力,日益受到各油田的高度重视,并成为了含CO2地层油气开发生产中急待解决的问题。本文通过加入表面活性剂复配体系,解决胶乳在高钙离子浓度的影响下产生的破乳现象,通过加入无机物、酸酐和多元醇反应生成树... 如何提高水泥石抗CO2腐蚀的能力,日益受到各油田的高度重视,并成为了含CO2地层油气开发生产中急待解决的问题。本文通过加入表面活性剂复配体系,解决胶乳在高钙离子浓度的影响下产生的破乳现象,通过加入无机物、酸酐和多元醇反应生成树枝型网状结构,改善胶乳水泥浆的稳定性。胶乳水泥浆体系的稠化时间通过常压稠化仪进行测定。同时,对胶乳水泥浆体系水泥石进行了高温高压抗CO2评价。结果表明:文中采用的改性方法效果良好,胶乳和水泥的复配体系高温稳定性良好,在90℃条件下,可以满足固井施工要求。同时改性后的胶乳水泥石高温、高压抗CO2腐蚀性能有了明显的提高。 展开更多
关键词 胶乳 抗腐蚀水泥 固井水泥 二氧化碳
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固井水泥环柱的腐蚀研究 被引量:43
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作者 黄柏宗 林恩平 +1 位作者 吕光明 孙富全 《油田化学》 CAS CSCD 北大核心 1999年第4期377-383,共7页
水泥环柱作为油气井套管的护套和包被,对防止套管腐蚀,封隔油、气、水,延长油气井寿命有至关重要的作用。水泥环柱的腐蚀、腐蚀机理及抗腐蚀固井材料的研究至关重要。本文全面地综述俄罗斯( 包括前苏联)、美国、中国(特别是中油... 水泥环柱作为油气井套管的护套和包被,对防止套管腐蚀,封隔油、气、水,延长油气井寿命有至关重要的作用。水泥环柱的腐蚀、腐蚀机理及抗腐蚀固井材料的研究至关重要。本文全面地综述俄罗斯( 包括前苏联)、美国、中国(特别是中油气集团公司工程技术研究院) 在这一领域的长期、系统的研究成果,应用非金属腐蚀及耐腐蚀理论系统地探讨水泥环柱腐蚀动力学及减少水泥环柱腐蚀的研究结果。 展开更多
关键词 水泥环柱 腐蚀 抗腐蚀水泥 固井 油井水泥
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Damage model of fresh concrete in sulphate environment 被引量:3
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作者 张敬书 张银华 +3 位作者 冯立平 金德保 汪朝成 董庆友 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1104-1113,共10页
A model of damage to fresh concrete in a corrosive sulphate environment was formulated to investigate how and why the strength of corroded concrete changes over time. First, a corroded concrete block was divided into ... A model of damage to fresh concrete in a corrosive sulphate environment was formulated to investigate how and why the strength of corroded concrete changes over time. First, a corroded concrete block was divided into three regions: an expanded and dense region; a crack-development region; and a noncorroded region. Second, based on the thickness of the surface corrosion layer and the rate of loss of compressive strength of the corroding region, a computational model of the concrete blocks' corrosion-resistance coefficient of compressive strength in a sulphate environment was generated. Third, experimental tests of the corrosion of concrete were conducted by immersing specimens in a corrosive medium for 270 d. A comparison of the experimental results with the computational formulae shows that the calculation results and test results are in good agreement. A parameter analysis reveals that the corrosion reaction plays a major role in the corrosion of fresh concrete containing ordinary Portland cement,but the diffusion of the corrosion medium plays a major role in the corrosion of concrete mixtures containing fly ash and sulphate-resistant cement. Fresh concrete with a high water-to-cement ratio shows high performance during the whole experiment process whereas fresh concrete with a low water-to-cement ratio shows poor performance during the late experiment period. 展开更多
关键词 fresh concrete sulphate corrosion corrosion coefficient computational model
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The compressive strength experimental study of cemented soil under H2SO4 corrosive in earlier period
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作者 HAN Peng-ju BAI Xiao-hong HAO Hai-yan 《Journal of Civil Engineering and Architecture》 2009年第3期54-58,共5页
In order to simulate and study the erosion effect process such as the changes of corrosive depth and unconfined compression strength of cemented soil sample in earlier period from 0 day to 60 days, a series of tests i... In order to simulate and study the erosion effect process such as the changes of corrosive depth and unconfined compression strength of cemented soil sample in earlier period from 0 day to 60 days, a series of tests including unconfined compressive tests, measuring the blocks' sizes, and taking photos, are conducted on the cemented soil blocks which were cured in different concentrations of H2SO4 solutions. The results of tests show that the corrosive depth is increasing and the unconfined compression strength is decreasing with the increase of H2SO4 solution concentration at the same erosion time, and the corrosive degree is increasing with the corrosive time. In the earlier state, the corrosive effect is serious, but the effect becomes slow in the later state in the same concentrated H2SO4 solution. After take statistics the date, a coefficient a is put forward to predict the reduction of the compressive strength of cemented soil in various concentration of H2SO4 solution, which could be used in practical design. 展开更多
关键词 cemented soil corrosive depth unconfined compression strength reduced coefficient
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