期刊文献+

基于分形理论的堆石料级配优化研究 被引量:16

Optimization of gradation of rockfill materials based on the fractal theory
下载PDF
导出
摘要 建立颗粒粒径的质量分布分形模型,收集不同堆石坝工程32条堆石料级配曲线,统计分形维数D的分布特性。各堆石坝工程堆石料级配具有良好的分形特性,可考虑将D作为反映和描述堆石料级配特性的新指标,D在2.348~2.699之间,大多数堆石料的分形维数在2.6左右。以古水垫层料为研究对象,设计了6组不同分形维数的级配曲线,采用随机颗粒不连续变形方法(SGDD)研究不同分形维数对堆石料压实性能和宏细观力学特性的影响。分形维数从2.0到2.8,孔隙比呈先减后增趋势,在D=2.7时压实性能最优,而力链的非均匀程度随分形维数的增大而增大。综合考虑试样压实性和力链的非均匀程度,确定D=2.7时的级配为优化级配。 A fractal model for the rockfill particle-size distribution is employed and the range of fractal dimension is estimated through fitting the gradation curves of 32 rockfill materials from different rockfill dams. The gradation of rock materials possesses good fractal behavior, so that the fractaI dimension D can be used as a new index to describe the gradation characteristics ofrockfill materials. Based on the analysis of statistics, it is shown that fractal dimension D varies from 2.348 to 2.699, and it is about 2.6 for most dam materials. Six sets of gradation curves for cushion layer of Gushui rockfill dam are designed based on the fractal model. By employing the stochastic granular discontinuous deformation method (SGDD), the effects of fractal dimension on compaction capacity and the macroscopic and mesoscopic mechanical properties of rockfill materials are analyzed. As fractal dimension varies from 2 to 2.8, the void ratio decreases first and then increases, the material achieves its maximum compaction at D = 2.7. The degree of heterogeneity of force chains increases with the increasing of fractal dimension, and attains the maximum at D = 2.8. By considering both the compaction capacity and the force chain heterogeneity, it is found that the gradation at D = 2.7 is the optimum gradation.
出处 《岩土力学》 EI CAS CSCD 北大核心 2016年第7期1977-1985,共9页 Rock and Soil Mechanics
基金 国家自然科学基金项目(No.51322905 No.515791935 No.51509190) 中国博士后科学基金面上资助(No.2015M572195) 中央高校基本科研业务费专项资金~~
关键词 堆石料 分形维数 相对密度 力链 级配优化 rockfill materials fractal dimension relative density force chain gradation optimization
  • 相关文献

参考文献33

  • 1LIU Y J, LI G, YIN Z Y, et al. Influence of grading on the undrained behavior of granular materials[J]. Comptes Rendus Mecanique, 2014, 342(2): 85--95.
  • 2XIAO Y, LIU H, CHEN Y, et al. Strength and deformation of rockfiU material based on large-scale triaxial compression tests. I: Influences of density and pressure[J]. Journal of Geotechnical & Geoenvironmental Engineering, 2015, 140.
  • 3LI GANG, OVALLE C, DANO C, et al. Influence of grain size distribution on critical state of granular materials[C]//Springer Series in Geomechanics & Geoengineering Constitutive Modeling of Geomaterials Advances and New Applications. [S. 1.]: Is. n.], 2012.
  • 4WOOD D M, MAEDA K. Changing grading of soil:Effect on critical states[J]. Acta Geotechnica, 2008, 3(1): 3--14.
  • 5李罡,刘映晶,尹振宇,Christophe Dano,Pierre-Yves Hicher.粒状材料临界状态的颗粒级配效应[J].岩土工程学报,2014,36(3):452-457. 被引量:22
  • 6本社.混凝土面板堆石坝设计规范SL228-2013[S].北京:水利水电出版社,2013.
  • 7朱晟,王永明,翁厚洋.粗粒筑坝材料密实度的缩尺效应研究[J].岩石力学与工程学报,2011,30(2):348-357. 被引量:53
  • 8MANDELBROT B B. Fractals: form, chance and dimension[J]. Physics Today, 1979, 1(6): 725--729.
  • 9MANDELBROT B B. The fractal geometry of nature[M]. NewYork. [s.n.], 1983.
  • 10谢和平,高峰,周宏伟,左建平.岩石断裂和破碎的分形研究[J].防灾减灾工程学报,2003,23(4):1-9. 被引量:163

二级参考文献187

共引文献480

同被引文献162

引证文献16

二级引证文献91

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部