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高温烟气管道膨胀节稳定失效分析与设计优化 被引量:4
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作者 刘广厦 何海科 +1 位作者 王佳博 李世乾 《压力容器》 北大核心 2024年第2期66-71,共6页
针对某甲醇制烯烃(MTO)装置再生烟气管道波纹管膨胀节稳定失效的故障,分析了管道支座布置和操作工况变化对膨胀节稳定性的影响,结合管道热位移、盲板力的计算,证明了管道支座的选型及合理布置是保证膨胀节安全、有效服役的关键。提出了... 针对某甲醇制烯烃(MTO)装置再生烟气管道波纹管膨胀节稳定失效的故障,分析了管道支座布置和操作工况变化对膨胀节稳定性的影响,结合管道热位移、盲板力的计算,证明了管道支座的选型及合理布置是保证膨胀节安全、有效服役的关键。提出了膨胀节的改造应用方案和治理措施,为类似工况膨胀节的应用和失效预防提供了经验。 展开更多
关键词 膨胀节 盲板力 支座 稳定失效
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Effect of pore pressure on deformation and unstable snap-back for shear band and elastic rock system
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作者 王学滨 《Journal of Central South University of Technology》 EI 2007年第3期418-424,共7页
Fast Lagrangian analysis of continua(FLAC) was used to study the influence of pore pressure on the mechanical behavior of rock specimen in plane strain direct shear, the distribution of yielded elements, the distribut... Fast Lagrangian analysis of continua(FLAC) was used to study the influence of pore pressure on the mechanical behavior of rock specimen in plane strain direct shear, the distribution of yielded elements, the distribution of displacement and velocity across shear band as well as the snap-back (elastic rebound) instability. The effective stress law was used to represent the weakening of rock containing pore fluid under pressure. Numerical results show that rock specimen becomes soft (lower strength and hardening modulus) as pore pressure increases, leading to higher displacement skip across shear band. Higher pore pressure results in larger area of plastic zone, higher concentration of shear strain, more apparent precursor to snap-back (unstable failure) and slower snap-back. For higher pore pressure, the formation of shear band-elastic body system and the snap-back are earlier; the distance of snap-back decreases; the capacity of snap-back decreases, leading to lower elastic strain energy liberated beyond the instability and lower earthquake or rockburst magnitude. In the process of snap-back, the velocity skip across shear band is lower for rock specimen at higher pore pressure, showing the slower velocity of snap-back. 展开更多
关键词 pore pressure shear band snap-back STRAIN-SOFTENING unstable failure stress-strain curve
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Slope stability analysis considering joined influences of nonlinearity and dilation 被引量:19
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作者 杨小礼 黄阜 《Journal of Central South University》 SCIE EI CAS 2009年第2期292-296,共5页
The soil masses of slopes were assumed to follow a nonlinear failure criterion and a nonassociated flow rule.The stability factors of slopes were calculated using vertical slice method based on limit analysis.The pote... The soil masses of slopes were assumed to follow a nonlinear failure criterion and a nonassociated flow rule.The stability factors of slopes were calculated using vertical slice method based on limit analysis.The potential sliding mass was divided into a series of vertical slices as well as the traditional slice technique.Equating the external work rate to the internal energy dissipation,the optimum solutions to stability factors were determined by the nonlinear programming algorithm.From the numerical results,it is found that the present solutions agree well with previous results when the nonlinear criterion reduces to the linear criterion,and the nonassociated flow rule reduces to the associated flow rule.The stability factors decrease by 39.7%with nonlinear parameter varying from 1.0 to 3.0.Dilation and nonlinearity have significant effects on the slope stability factors. 展开更多
关键词 nonlinear failure criterion nonassociated flow rule soil slope
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