Steady states in hierarchical structured populations with distributed states at birth
arXiv:1004.3968 · doi:10.3934/dcdsb.2012.17.2671
Abstract
We investigate steady states of a quasilinear first order hyperbolic partial integro-differential equation. The model describes the evolution of a hierarchical structured population with distributed states at birth. Hierarchical size-structured models describe the dynamics of populations when individuals experience size-specific environment. This is the case for example in a population where individuals exhibit cannibalistic behavior and the chance to become prey (or to attack) depends on the individual's size. The other distinctive feature of the model is that individuals are recruited into the population at arbitrary size. This amounts to an infinite rank integral operator describing the recruitment process. First we establish conditions for the existence of a positive steady state of the model. Our method uses a fixed point result of nonlinear maps in conical shells of Banach spaces. Then we study stability properties of steady states for the special case of a separable growth rate using results from the theory of positive operators on Banach lattices.
to appear in Discrete and Continuous Dynamical Systems - Series B
References in corpus (1)
Cited by in corpus (7)
- Steady states in a structured epidemic model with Wentzell boundary condition
- On the net reproduction rate of continuous structured populations with distributed states at birth
- Positive steady states of evolution equations with finite dimensional nonlinearities
- Stability of steady states for a class of flocculation equations with growth and removal
- Boundary perturbations and steady states of structured populations
- A numerical framework for computing steady states of size-structured population models and their stability
- On the existence of non-trivial steady-state size-distributions for a class of flocculation equations