Coagulation–Fragmentation Model for Animal Group-Size Statistics
Publication
, Journal Article
Degond, P; Liu, JG; Pego, RL
Published in: Journal of Nonlinear Science
April 1, 2017
We study coagulation–fragmentation equations inspired by a simple model proposed in fisheries science to explain data for the size distribution of schools of pelagic fish. Although the equations lack detailed balance and admit no H-theorem, we are able to develop a rather complete description of equilibrium profiles and large-time behavior, based on recent developments in complex function theory for Bernstein and Pick functions. In the large-population continuum limit, a scaling-invariant regime is reached in which all equilibria are determined by a single scaling profile. This universal profile exhibits power-law behavior crossing over from exponent -23 for small size to -32 for large size, with an exponential cutoff.
Duke Scholars
Published In
Journal of Nonlinear Science
DOI
EISSN
1432-1467
ISSN
0938-8974
Publication Date
April 1, 2017
Volume
27
Issue
2
Start / End Page
379 / 424
Related Subject Headings
- Fluids & Plasmas
- 4903 Numerical and computational mathematics
- 4901 Applied mathematics
- 0102 Applied Mathematics
Citation
APA
Chicago
ICMJE
MLA
NLM
Degond, P., Liu, J. G., & Pego, R. L. (2017). Coagulation–Fragmentation Model for Animal Group-Size Statistics. Journal of Nonlinear Science, 27(2), 379–424. https://doi.org/10.1007/s00332-016-9336-3
Degond, P., J. G. Liu, and R. L. Pego. “Coagulation–Fragmentation Model for Animal Group-Size Statistics.” Journal of Nonlinear Science 27, no. 2 (April 1, 2017): 379–424. https://doi.org/10.1007/s00332-016-9336-3.
Degond P, Liu JG, Pego RL. Coagulation–Fragmentation Model for Animal Group-Size Statistics. Journal of Nonlinear Science. 2017 Apr 1;27(2):379–424.
Degond, P., et al. “Coagulation–Fragmentation Model for Animal Group-Size Statistics.” Journal of Nonlinear Science, vol. 27, no. 2, Apr. 2017, pp. 379–424. Scopus, doi:10.1007/s00332-016-9336-3.
Degond P, Liu JG, Pego RL. Coagulation–Fragmentation Model for Animal Group-Size Statistics. Journal of Nonlinear Science. 2017 Apr 1;27(2):379–424.
Published In
Journal of Nonlinear Science
DOI
EISSN
1432-1467
ISSN
0938-8974
Publication Date
April 1, 2017
Volume
27
Issue
2
Start / End Page
379 / 424
Related Subject Headings
- Fluids & Plasmas
- 4903 Numerical and computational mathematics
- 4901 Applied mathematics
- 0102 Applied Mathematics