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Sun Qicheng, Song Shixiong, Jiang Yimin, Jin Feng, Zhang Chuhan. GRANULAR SOLID HYDRODYNAMICS AND ANALYSES ON TRIAXIAL COMPRESSIONS[J]. Chinese Journal of Theoretical and Applied Mechanics, 2012, 44(2): 447-450. DOI: 10.6052/0459-1879-2012-2-20120229
Citation: Sun Qicheng, Song Shixiong, Jiang Yimin, Jin Feng, Zhang Chuhan. GRANULAR SOLID HYDRODYNAMICS AND ANALYSES ON TRIAXIAL COMPRESSIONS[J]. Chinese Journal of Theoretical and Applied Mechanics, 2012, 44(2): 447-450. DOI: 10.6052/0459-1879-2012-2-20120229

GRANULAR SOLID HYDRODYNAMICS AND ANALYSES ON TRIAXIAL COMPRESSIONS

Funds: The project was supported by the National Key Basic Research program of China (2010CB731504), the National Natural linebreak vspace,Science Foundation of China (11034010) and the research funding from the State Key Laboratory of Hydroscience and linebreak vspace,Engineering, Tsinghua University (2010-TC-1).
  • Received Date: June 13, 2011
  • Revised Date: October 27, 2011
  • Hydrodynamics theory was originally developed Newtonian fluids. The theory combines mass, energy, moment, entropy flow and dissipation flows in Onsager relations. As an extension to granular materials, granular solid hydrodynamics(GSH) constructs a thermodynamics function and a series of transport coefficients for irreversible processes in granular matter. In this paper, GSH is used to analyze mechanical properties of dry sands under triaxial compressions. The stress-strain relations and volumetric strain-axial strain relations are obtained, which are of great engineering concerns. The evolution of granular temperature is studied as well.
  • 1 孙其诚, 王光谦. 颗粒物质力学导论. 北京: 科学出版社, 2009 (Sun Qicheng, Wang Guangqian. Introduction to the Mechanics of Granular Materials. Beijing: Science Press, 2009 (in Chinese))   
    2 Gudehus G, Jiang YM, Liu M. Seismo- and thermodynamics of granular solids. it Granular Matter, 2011, 13: 319-340   
    3 Jiang YM, Liu M. Granular solid hydrodynamics. it Granular Matter,2009, 11: 139-156   
    4 Mahle S, Jiang YM, Liu M. The critical state as a steady-state solution of granular solid hydrodynamics. arXiv:1006.5131v3 [physics.geo-ph] 26 Oct, 2010
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