A PDE-ODE Coupled Spatio-Temporal Mathematical Model for Fire Blight During Bloom

Fuente: arXiv
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Hauptverfasser: Pupulin, Michael, Wang, Xiang-Sheng, Efendiev, Messoud A, Giletti, Thomas, Eberl, Hermann J.
Format: Preprint
Veröffentlicht: 2022
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author Pupulin, Michael
Wang, Xiang-Sheng
Efendiev, Messoud A
Giletti, Thomas
Eberl, Hermann J.
author_facet Pupulin, Michael
Wang, Xiang-Sheng
Efendiev, Messoud A
Giletti, Thomas
Eberl, Hermann J.
contents Fire blight is a bacterial plant disease that affects apple and pear trees. We present a mathematical model for its spread in an orchard during bloom. This is a PDE-ODE coupled system, consisting of two semilinear PDEs for the pathogen, coupled to a system of three ODEs for the stationary hosts. Exploratory numerical simulations suggest the existence of travelling waves, which we subsequently prove, under some conditions on parameters, using the method of upper and lower bounds and Schauder's fixed point theorem. Our results are likely not optimal in the sense that our constraints on parameters, which can be interpreted biologically, are sufficient for the existence of travelling waves, but probably not necessary. Possible implications for fire blight biology and management are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2201_10696
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle A PDE-ODE Coupled Spatio-Temporal Mathematical Model for Fire Blight During Bloom
Pupulin, Michael
Wang, Xiang-Sheng
Efendiev, Messoud A
Giletti, Thomas
Eberl, Hermann J.
Analysis of PDEs
Dynamical Systems
Functional Analysis
Fire blight is a bacterial plant disease that affects apple and pear trees. We present a mathematical model for its spread in an orchard during bloom. This is a PDE-ODE coupled system, consisting of two semilinear PDEs for the pathogen, coupled to a system of three ODEs for the stationary hosts. Exploratory numerical simulations suggest the existence of travelling waves, which we subsequently prove, under some conditions on parameters, using the method of upper and lower bounds and Schauder's fixed point theorem. Our results are likely not optimal in the sense that our constraints on parameters, which can be interpreted biologically, are sufficient for the existence of travelling waves, but probably not necessary. Possible implications for fire blight biology and management are discussed.
title A PDE-ODE Coupled Spatio-Temporal Mathematical Model for Fire Blight During Bloom
topic Analysis of PDEs
Dynamical Systems
Functional Analysis
url https://arxiv.org/abs/2201.10696