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Continuum percolation thresholds for mixtures of spheres of different sizes

Author

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  • Consiglio, R.
  • Baker, D.R.
  • Paul, G.
  • Stanley, H.E.

Abstract

Using Monte-Carlo simulations, we find the continuum percolation threshold of a three-dimensional mixture of spheres of two different sizes. We fix the value of r, the ratio of the volume of the smaller sphere to the volume of the larger sphere, and determine the percolation threshold for various values of x, the ratio of the number of larger objects to the number of total objects. The critical volume fraction increases from φc=0.28955±0.00007 for equal-sized spheres to a maximum of φcmax=0.29731±0.00007 for x≈0.11, an increase of 2.7%.

Suggested Citation

  • Consiglio, R. & Baker, D.R. & Paul, G. & Stanley, H.E., 2003. "Continuum percolation thresholds for mixtures of spheres of different sizes," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 319(C), pages 49-55.
  • Handle: RePEc:eee:phsmap:v:319:y:2003:i:c:p:49-55
    DOI: 10.1016/S0378-4371(02)01501-7
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    Cited by:

    1. Lin, Jianjun & Chen, Huisu & Liu, Lin & Zhang, Rongling, 2020. "Impact of particle size ratio on the percolation thresholds of 2D bidisperse granular systems composed of overlapping superellipses," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 544(C).

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    Keywords

    Continuum percolation;

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