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Adhesion strength of tetrahydrofuran hydrates is dictated by substrate stiffness
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作者 Yan-Wen Lin Tong Li +4 位作者 Yi Zhang Wei-Wei Yan Xiao-Ming Chen Zhi-Sen Zhang Jian-Yang Wu 《Petroleum Science》 SCIE EI CAS CSCD 2024年第1期667-673,共7页
Understanding the hydrate adhesion is important to tackling hydrate accretion in petro-pipelines.Herein,the relationship between the Tetrahydrofuran(THF)hydrate adhesion strength(AS)and surface stiffness on elastic co... Understanding the hydrate adhesion is important to tackling hydrate accretion in petro-pipelines.Herein,the relationship between the Tetrahydrofuran(THF)hydrate adhesion strength(AS)and surface stiffness on elastic coatings is systemically examined by experimental shear force measurements and theoretical methods.The mechanical factor-elastic modulus of the coatings greatly dictates the hydrate AS,which is explained by the adhesion mechanics theory,beyond the usual factors such as wettability and structural roughness.Moreover,the hydrate AS increases with reducing the thickness of the elastic coatings,resulted from the decrease of the apparent surface elastic modulus.The effect of critical thickness for the elastic materials with variable elastic modulus on the hydrate AS is also revealed.This study provides deep perspectives on the regulation of the hydrate AS by the elastic modulus of elastic materials,which is of significance to design anti-hydrate surfaces for mitigation of hydrate accretion in petro-pipelines. 展开更多
关键词 HYDRATE Adhesion strength Elastic modulus COATINGS
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复杂小断块油藏水驱辅助注气吞吐提高采收率研究 被引量:4
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作者 曲世元 姜汉桥 +3 位作者 李俊键 周宇 马康 常元昊 《特种油气藏》 CAS CSCD 北大核心 2021年第4期116-122,共7页
复杂小断块油藏单纯利用注水或注气措施难以兼顾整个剩余油区域,挖潜效果有限。为提高复杂小断块油藏高含水期剩余油采收率,运用数值模拟方法探索了水驱辅助注气吞吐的开发方式,同时利用经济和效率双重指标分析了其油藏适应性。依据不... 复杂小断块油藏单纯利用注水或注气措施难以兼顾整个剩余油区域,挖潜效果有限。为提高复杂小断块油藏高含水期剩余油采收率,运用数值模拟方法探索了水驱辅助注气吞吐的开发方式,同时利用经济和效率双重指标分析了其油藏适应性。依据不同措施方案下典型模型的开发效果,确定了该方法的最优开发模式为:补充能量—闷井增能—闷井阶段—开发阶段,进一步确定了其技术界限:气水注入速度比为6.5~8.5、阶段二与阶段一增压比为0.1~0.3、注采比为0.4~0.6。将研究成果应用于胜利油田a-7区块,模拟预测表明该方法相比基础水驱开发采收率提高12.96个百分点。研究成果对复杂小断块油藏高含水期调整开发措施、提高采收率具有重要的指导意义。 展开更多
关键词 水驱辅助注气吞吐 提高采收率 人工气顶 数值模拟 复杂小断块油藏 胜利油田
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Modeling nanoscale ice adhesion 被引量:1
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作者 Senbo Xiao Jianying He Zhiliang Zhang 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2017年第3期224-226,共3页
Anti-icing is crucial for numerous instruments and devices in low temperature circum- stance. One of the approaches in anti-icing is to reduce ice adhesion strength, seeking spontaneous de-icing processes by natural f... Anti-icing is crucial for numerous instruments and devices in low temperature circum- stance. One of the approaches in anti-icing is to reduce ice adhesion strength, seeking spontaneous de-icing processes by natural forces of gravity or by winds. In order to enable tai- lored surface icephobicity design, research requires a good theoretical understanding of the atomistic interacting mechanisms between water/ice molecules and their adhering substrates. Herein, this work focuses on using atomistic modeling and molecular dynamics simulation to build a nanosized ice-cube adhering onto silicon surface, with different contact modes of solid-solid and solid-liquid-solid patterns. This study provides atomistic models for probing nanoscale ice adhesion mechanics and theoretical platforms for explaining experimental results. 展开更多
关键词 Anti-icing Atomistic modeling Molecular dynamics Adhesion Interface mechanics
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