In this paper we study two stochastic chemostat models, with and without wall growth, driven by a white noise. Specifically, we analyze the existence and uniqueness of solutions for these models, as well as the existence of the random attractor associated to the random dynamical system generated by the solution. The analysis will be carried out by means of the well-known Ornstein-Uhlenbeck process, that allows us to transform our stochastic chemostat models into random ones.Fondo Europeo de Desarrollo RegionalMinisterio de Economía y CompetitividadJunta de Andalucí
The stochastic dynamics of a two-state bioreactor model with random feed flow fluctuations and non-m...
Population dynamics and in particular microbial population dynamics, though they are complex but als...
n this article, a random and a stochastic version of a SIR nonautonomous model previously introduced...
In this paper we study a simple chemostat model influenced by white noise which makes this kind of ...
In this paper, we analyze a chemostat model with wall growth where the input flow is perturbed by tw...
In this paper we study a new way to model noisy input flows in the chemostat model, based on the Orn...
In this talk, some different ways of modeling stochastic chemostats will be presented in order to ob...
Chemostat refers to a laboratory device used for growing microorganisms in a cultured environment, a...
In this work, the simplest chemostat model, perturbing the input flow by means of the Ornstein-Uhlen...
We revisit the chemostat model with Haldane growth function, here subject to bounded random disturba...
This paper is concerned with the asymptotic behavior of solutions to nonlocal stochastic partial dif...
We present a stochastic simple chemostat model in which the dilution rate was influenced by white no...
The stochastic chemostat model with Monod-Haldane response function is perturbed by environmental wh...
AbstractIn this paper we will develop a new stochastic population model under regime switching. Our ...
We study the asymptotic behaviour of a reaction-diffusion equation, and prove that the addition of m...
The stochastic dynamics of a two-state bioreactor model with random feed flow fluctuations and non-m...
Population dynamics and in particular microbial population dynamics, though they are complex but als...
n this article, a random and a stochastic version of a SIR nonautonomous model previously introduced...
In this paper we study a simple chemostat model influenced by white noise which makes this kind of ...
In this paper, we analyze a chemostat model with wall growth where the input flow is perturbed by tw...
In this paper we study a new way to model noisy input flows in the chemostat model, based on the Orn...
In this talk, some different ways of modeling stochastic chemostats will be presented in order to ob...
Chemostat refers to a laboratory device used for growing microorganisms in a cultured environment, a...
In this work, the simplest chemostat model, perturbing the input flow by means of the Ornstein-Uhlen...
We revisit the chemostat model with Haldane growth function, here subject to bounded random disturba...
This paper is concerned with the asymptotic behavior of solutions to nonlocal stochastic partial dif...
We present a stochastic simple chemostat model in which the dilution rate was influenced by white no...
The stochastic chemostat model with Monod-Haldane response function is perturbed by environmental wh...
AbstractIn this paper we will develop a new stochastic population model under regime switching. Our ...
We study the asymptotic behaviour of a reaction-diffusion equation, and prove that the addition of m...
The stochastic dynamics of a two-state bioreactor model with random feed flow fluctuations and non-m...
Population dynamics and in particular microbial population dynamics, though they are complex but als...
n this article, a random and a stochastic version of a SIR nonautonomous model previously introduced...