Entropy and temperature of a static granular assembly: An ab initio approach

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Abstract

We construct a statistical framework for static assemblies of deformable grains which parallels that of equilibrium statistical mechanics but with a conservation principle based on the mechanical stress tensor. We define a state function that has all the attributes of entropy. In particular, maximizing this function leads to a well-defined granular temperature and the equivalent of the Boltzman distribution for ensembles of grain packings. Predictions of the ensemble are verified against simulated packings of frictionless, deformable disks. © 2007 The American Physical Society.

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Henkes, S., O’Hern, C. S., & Chakraborty, B. (2007). Entropy and temperature of a static granular assembly: An ab initio approach. Physical Review Letters, 99(3). https://doi.org/10.1103/PhysRevLett.99.038002

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