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含瓦斯煤体破坏过程中AE序列关联维数演化分析 被引量:9
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作者 刘延保 曹树刚 +2 位作者 李勇 郭平 张遵国 《重庆大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第3期108-114,共7页
利用分形理论对无瓦斯和含瓦斯煤体失稳破坏中的声发射序列关联维数演化特征进行了分析。结果表明,单轴载荷条件下煤体的声发射时间序列在各变形阶段具有明显的分形特征,各变形阶段的声发射过程具有不同的自相似性,其关联维数可描述煤... 利用分形理论对无瓦斯和含瓦斯煤体失稳破坏中的声发射序列关联维数演化特征进行了分析。结果表明,单轴载荷条件下煤体的声发射时间序列在各变形阶段具有明显的分形特征,各变形阶段的声发射过程具有不同的自相似性,其关联维数可描述煤样力学状态;三轴加载过程中,无瓦斯和含瓦斯煤样的声发射时间序列随应力水平的变化趋势和声发射关联维数变化趋势相似;弹性阶段后,煤样的声发射时间序列关联维数的突降,可以作为破坏的'前兆',这一特征不随围压变化、瓦斯压力的存在与否而发生变化。 展开更多
关键词 含瓦斯煤体 损伤 声发射 关联维数 瓦斯吸附
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Stormwater treatment: examples of computational fluid dynamics modeling
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作者 Gaoxiang YING John SANSALONE +4 位作者 Srikanth PATHAPATI Giuseppina GAROFALO Marco MAGLIONICO Andrea BOLOGNESI Alessandro ARTINA 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2012年第5期638-648,共11页
Control of rainfall-runoff particulate matter (PM) and PM-bound chemical loads is challenging; in part due to the wide gradation of PM complex geometries of many unit operations and variable flow rates. Such challen... Control of rainfall-runoff particulate matter (PM) and PM-bound chemical loads is challenging; in part due to the wide gradation of PM complex geometries of many unit operations and variable flow rates. Such challenges and the expense associated with resolving such challenges have led to the relatively common examination of a spectrum of unit operations and processes. This study applies the principles of computa- tional fluid dynamics (CFD) to predict the particle and pollutant clarification behavior of these systems subject to dilute multiphase flows, typical of rainfall-runoff, within computationally reasonable limits, to a scientifically acceptable degree of accuracy. The Navier-Stokes (NS) system of nonlinear partial differential equations for multi- phase hydrodynamics and separation of entrained particles are solved numerically over the unit operation control volume with the boundary and initial conditions defined and then solved numerically until the desired convergence criteria are met. Flow rates examined are scaled based on sizing of common unit operations such as hydrodynamic separators (HS), wet basins, or filters, and are examined from 1 to 100 percent of the system maximum hydraulic operating flow rate. A standard turbulence model is used to resolve flow, and a discrete phase model (DPM) is utilized to examine the particle clarification response. CFD results closely follow physical model results across the entire range of flow rates. Post-processing the CFD predictions provides an in-depth insight into the mechanistic behavior of unit operations by means of three dimensional (3-D) hydraulic profiles and particle trajectories. Results demon- strate the role of scour in the rapid degradation of unit operations that are not maintained. Comparisons are provided between measured and CFD modeled results and a mass balance error is identified. CFD is arguably the most powerful tool available for our profession since continuous simulation modeling. 展开更多
关键词 STORMWATER unit operations and processes(UOPs) hydrodynamic separation filtration adsorption computational fluid dynamics (CFD) turbulence modeling discrete phase model particle separation detention/reten-tion basins CLARIFICATION
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