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首頁» 過刊瀏覽» 2020» Vol.5» Issue(1) 67-77???? DOI : 10.3969/j.issn.2096-1693.2020.01.007
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水基頁巖抑制劑烷基糖苷季銨鹽的頁巖強度維持機理研究
徐梓辰,金衍,劉曉敏
1 中國石油大學( 北京) 油氣資源與探測國家重點實驗室,北京 102249 2 中海油田服務股份有限公司,廊坊 065201
Study of inhibition performance and the mechanism of action of alkyl glucoside quaternary ammonium salt as a new shale inhibitor
XU Zichen, JIN Yan, LIU Xiaomin
1 College of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China 2 China Oilfield Services Limited, Beijing 101149, China

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摘要? 針對頁巖氣大位移水平井的防塌問題,通過對頁巖微觀組成結構的分析,研究了頁巖組成礦物遇水膨脹機理,并依據其水化膨脹機理在現(xiàn)有技術烷基糖苷粘土抑制劑的基礎上合成了烷基糖苷季銨鹽(QASAPG)水基頁巖抑制劑,通過滾動回收率、相對抑制率、頁巖膨脹、水活度測試、粒度分布等實驗方法,評價了烷基糖苷季銨鹽的抑制性能。結果表明,烷基糖苷季銨鹽的巖屑一次回收率大于94.7%,相對回收率大于99%;相對抑制率達99.9%;頁巖膨脹高度降低率達67.3%;水溶液水活度可低至0.67;可顯著降低鉆井液中亞微米粒子含量表現(xiàn)出優(yōu)異的抑制性能。研究表明,烷基糖苷季銨鹽主要通過嵌入及拉緊晶層、靜電及羥基吸附成膜、降低水活度、形成封固層等作用來發(fā)揮強抑制性能,此外還通過吸附成膜、降低水活度來發(fā)揮抑制性能。研究通過巖石力學強度試驗證實了烷基糖苷季銨鹽較其他種類的抑制劑可以很好的維持巖石的原有強度不降低的特性。
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關鍵詞 : 鉆井液;烷基糖苷季銨鹽;頁巖抑制劑;井壁穩(wěn)定;抑制性能;抑制機理
Abstract

Aiming at the problem of borehole collapse of shale gas extended reach horizontal wells, the mechanism of water swelling of shale minerals is obtained by analyzing the micro-structure of shale. A new shale inhibitor, an alkyl glucoside quaternary ammonium salt (QASAPG), was developed and its mechanism of action on shale was investigated. Through multiple experimental methods such as cuttings roll recovery rate, relative inhibitory rate, shale swelling, water activity measurement, and particle size distribution, the inhibition performance of QASAPG was evaluated. The corresponding results indicated that under the effect of the QASAPG, the first recovery rate and the relative recovery rate of cuttings were greater than 94.7% and 99% respectively; the reduction rate of the height of shale swelling reached 67.3%. The QASAPG aqueous solution activity is only 0.67; QASAPG can significantly reduce the content of submicron particles in drilling fluid; and QASAPG exhibited excellent inhibition performance. Experiments results showed that the excellent inhibition performance of QASAPG was mainly due to it being embedded into the layered structure, straining the crystal layers, forming films by electrostatic effects and hydroxyl adsorption, reducing the water activity and forming a sealing layer. However, the inhibition performance of alkyl glucoside was mainly from forming films and reducing the activity of water under high concentrations. Through the analysis of the inhibition mechanisms, it can be well explained that the inhibition performance of QASAPG is far superior to that of alkyl glucoside and this has also been proved by field application. With the special properties of the film effect, QASAPG may make a contribution to the drilling industry and even in hydraulic fracturing.

Key words: drilling fluid; alkyl glucoside quaternary ammonium salt; shale inhibitor; wellbore stability; inhibition performance; inhibition mechanism
收稿日期: 2020-03-28 ????
PACS: ? ?
基金資助:國家自然科學基金聯(lián)合基金 (U1762215) 資助
通訊作者: [email protected]
引用本文: ??
徐梓辰, 金衍, 劉曉敏. 水基頁巖抑制劑烷基糖苷季銨鹽的頁巖強度維持機理研究. 石油科學通報, 2020, 01: 67-77
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XU Zichen, JIN Yan, LIU Xiaomin. Study of inhibition performance and the mechanism of action of alkyl glucoside quaternary ammonium salt as a new shale inhibitor. Petroleum Science Bulletin, 2020, 01: 67-77.
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