Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing Phytoplankton

A mathematical model is proposed to study the role of distributed delay on plankton ecosystem in the presence of a toxic producing phytoplankton. The model includes three state variables, namely, nutrient concentration, phytoplankton biomass, and zooplankton biomass. The release of toxic substance b...

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Main Authors: Swati Khare, O. P. Misra, Chhatrapal Singh, Joydip Dhar
Format: Article
Language:English
Published: Hindawi Limited 2011-01-01
Series:International Journal of Differential Equations
Online Access:http://dx.doi.org/10.1155/2011/603183
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spelling doaj-545903954df34a9692cac8ba83c9a1e72020-11-24T22:34:33ZengHindawi LimitedInternational Journal of Differential Equations1687-96431687-96512011-01-01201110.1155/2011/603183603183Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing PhytoplanktonSwati Khare0O. P. Misra1Chhatrapal Singh2Joydip Dhar3School of Mathematics and Allied Sciences, Jiwaji University, MP Gwalior 474011, IndiaSchool of Mathematics and Allied Sciences, Jiwaji University, MP Gwalior 474011, IndiaSchool of Mathematics and Allied Sciences, Jiwaji University, MP Gwalior 474011, IndiaDepartment of Applied Sciences, ABV-Indian Institute of Information Technology and Management, MP Gwalior 474010, IndiaA mathematical model is proposed to study the role of distributed delay on plankton ecosystem in the presence of a toxic producing phytoplankton. The model includes three state variables, namely, nutrient concentration, phytoplankton biomass, and zooplankton biomass. The release of toxic substance by phytoplankton species reduces the growth of zooplankton and this plays an important role in plankton dynamics. In this paper, we introduce a delay (time-lag) in the digestion of nutrient by phytoplankton. The stability analysis of all the feasible equilibria are studied and the existence of Hopf-bifurcation for the interior equilibrium of the system is explored. From the above analysis, we observe that the supply rate of nutrient and delay parameter play important role in changing the dynamical behaviour of the underlying system. Further, we have derived the explicit algorithm which determines the direction and the stability of Hopf-bifurcation solution. Finally, numerical simulation is carried out to support the theoretical result.http://dx.doi.org/10.1155/2011/603183
collection DOAJ
language English
format Article
sources DOAJ
author Swati Khare
O. P. Misra
Chhatrapal Singh
Joydip Dhar
spellingShingle Swati Khare
O. P. Misra
Chhatrapal Singh
Joydip Dhar
Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing Phytoplankton
International Journal of Differential Equations
author_facet Swati Khare
O. P. Misra
Chhatrapal Singh
Joydip Dhar
author_sort Swati Khare
title Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing Phytoplankton
title_short Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing Phytoplankton
title_full Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing Phytoplankton
title_fullStr Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing Phytoplankton
title_full_unstemmed Role of Delay on Planktonic Ecosystem in the Presence of a Toxic Producing Phytoplankton
title_sort role of delay on planktonic ecosystem in the presence of a toxic producing phytoplankton
publisher Hindawi Limited
series International Journal of Differential Equations
issn 1687-9643
1687-9651
publishDate 2011-01-01
description A mathematical model is proposed to study the role of distributed delay on plankton ecosystem in the presence of a toxic producing phytoplankton. The model includes three state variables, namely, nutrient concentration, phytoplankton biomass, and zooplankton biomass. The release of toxic substance by phytoplankton species reduces the growth of zooplankton and this plays an important role in plankton dynamics. In this paper, we introduce a delay (time-lag) in the digestion of nutrient by phytoplankton. The stability analysis of all the feasible equilibria are studied and the existence of Hopf-bifurcation for the interior equilibrium of the system is explored. From the above analysis, we observe that the supply rate of nutrient and delay parameter play important role in changing the dynamical behaviour of the underlying system. Further, we have derived the explicit algorithm which determines the direction and the stability of Hopf-bifurcation solution. Finally, numerical simulation is carried out to support the theoretical result.
url http://dx.doi.org/10.1155/2011/603183
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