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L─fuzzy拓扑──-开性度
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作者 罗承忠 王万良 《北京师范大学学报(自然科学版)》 CAS CSCD 北大核心 1997年第2期163-168,共6页
Hazra等引入了fuzzy集的开性度概念,从而给出了fuzzy拓扑的一个新的定义.本文将这一工作推广到L-fuzzy拓扑上,拓宽了其研究范围,此外,还讨论了L-fuzzy拓扑空间之间连续序同态及其某些弱形式的特点和性质.
关键词 开性度 闭性度 连续序同态 LF拓扑
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Permanent deformation response parameters of asphalt mixtures for a new mix-confined repeated load test 被引量:2
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作者 廖公云 杨毅文 +1 位作者 黄晓明 向晋源 《Journal of Central South University》 SCIE EI CAS 2013年第5期1434-1442,共9页
The main objective of this work is to propose new mixture response parameters and to compare correlations with rut depths and sensitivity of permanent deformation response parameters based on field extracted cores and... The main objective of this work is to propose new mixture response parameters and to compare correlations with rut depths and sensitivity of permanent deformation response parameters based on field extracted cores and lab-mixed duplicates. A new "mix-confined" test is developed and four new parameters for this test are proposed. Correlation coefficients with rut depths and coefficients of variation (sensitivity) are compared between the four new and two existing parameters. Some parameters are recommended to be used for the newly developed test. The results show that, newly developed test can capture the changes of permanent deformation of asphalt mixtures. Only one new parameter (D1 of Stephen Price model) and one existing parameter (flow number, Fn ) have strong correlations with rut depths of asphalt pavements (R2 greater than 0.7) and have relative small sensitivity (coefficient of variation, COV, less than 30%). For polymer modified asphalt mixtures, the parameter D1 rather than Fn should be used. These findings can be used to check the permanent deformation of asphalt mixture during the mix design. 展开更多
关键词 mixture response parameters permanent deformation asphalt mixture mix-confined test correlation coefficient sensitivity
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Improved model-based study of backfill stress distribution considering rock-backfill closure,mine depth,and position along stope length
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作者 LIU Chun-kang WANG Hong-jiang +1 位作者 WU Ai-xiang LI Hao 《Journal of Central South University》 2025年第7期2717-2731,共15页
During upward horizontal stratified backfill mining,stable backfill is essential for cap and sill pillar recovery.Currently,the primary method for calculating the required strength of backfill is the generalized three... During upward horizontal stratified backfill mining,stable backfill is essential for cap and sill pillar recovery.Currently,the primary method for calculating the required strength of backfill is the generalized three-dimensional(3 D)vertical stress model,which ignores the effect of mine depth,failing to obtain the vertical stress at different positions along stope length.Therefore,this paper develops and validates an improved 3 D model solution through numerical simulation in Rhino-FLAC^(3D),and examines the stress state and stability of backfill under different conditions.The results show that the improved model can accurately calculate the vertical stress at different mine depths and positions along stope length.The error rates between the results of the improved model and numerical simulation are below 4%,indicating high reliability and applicability.The maximum vertical stress(σ_(zz,max))in backfill is positively correlated with the degree of rock-backfill closure,which is enhanced by mine depth and elastic modulus of backfill,while weakened by stope width and inclination,backfill friction angle,and elastic modulus of rock mass.Theσ_(zz,max)reaches its peak when the stope length is 150 m,whileσ_(zz,max)is insensitive to changes in rock-backfill interface parameters.In all cases,the backfill stability can be improved by reducingσ_(zz,max).The results provide theoretical guidance for the backfill strength design and the safe and efficient recovery of ore pillars in deep mining. 展开更多
关键词 backfill mine depth rock-backfill closure stability maximum vertical stress numerical simulation
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