Title of article :
Effects of density-dependent migrations on stability of a two-patch predator–prey model
Author/Authors :
A. El Abdllaoui، نويسنده , , Abderrahim El and Auger، نويسنده , , Pierre and Kooi، نويسنده , , Bob W. and de la Parra، نويسنده , , Rafael Bravo and Mchich، نويسنده , , Rachid، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Pages :
20
From page :
335
To page :
354
Abstract :
We consider a predator–prey model in a two-patch environment and assume that migration between patches is faster than prey growth, predator mortality and predator–prey interactions. Prey (resp. predator) migration rates are considered to be predator (resp. prey) density-dependent. Prey leave a patch at a migration rate proportional to the local predator density. Predators leave a patch at a migration rate inversely proportional to local prey population density. Taking advantage of the two different time scales, we use aggregation methods to obtain a reduced (aggregated) model governing the total prey and predator densities. First, we show that for a large class of density-dependent migration rules for predators and prey there exists a unique and stable equilibrium for migration. Second, a numerical bifurcation analysis is presented. We show that bifurcation diagrams obtained from the complete and aggregated models are consistent with each other for reasonable values of the ratio between the two time scales, fast for migration and slow for local demography. Our results show that, under some particular conditions, the density dependence of migrations can generate a limit cycle. Also a co-dim two Bautin bifurcation point is observed in some range of migration parameters and this implies that bistability of an equilibrium and limit cycle is possible.
Keywords :
bifurcation analysis , Density-dependent migrations , community stability , Spatial predator–prey model , Aggregation methods
Journal title :
Mathematical Biosciences
Serial Year :
2007
Journal title :
Mathematical Biosciences
Record number :
1589149
Link To Document :
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