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Numerical methods and parameter estimation of a structured population model with discrete events in the life history

机译:生命历史中具有离散事件的结构化种群模型的数值方法和参数估计

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We consider two numerical methods for the solution of a physiologically structured population (PSP) model with multiple life stages and discrete event reproduction. The model describes the dynamic behaviour of a predator-prey system consisting of rotifers predating on algae. The nitrate limited algal prey population is modelled unstructured and described by an ordinary differential equation (ODE). The formulation of the rotifer dynamics is based on a simple physiological model for their two life stages, the egg and the adult stage. An egg is produced when an energy buffer reaches a threshold value. The governing equations are coupled partial differential equations (PDE) with initial and boundary conditions. The population models together with the equation for the dynamics of the nutrient result in a chemostat model. Experimental data are used to estimate the model parameters. The results obtained with the explicit finite difference (FD) technique compare well with those of the Escalator Boxcar Train (EBT) method. This justifies the use of the fast FD method for the parameter estimation, a procedure which involves repeated solution of the model equations. (C) 2000 Academic Press. [References: 24]
机译:我们考虑了两种数值方法来求解具有多个生命阶段和离散事件再现的生理结构人口(PSP)模型。该模型描述了由轮虫捕食的藻类组成的捕食者-被捕食者系统的动态行为。硝酸盐限制的藻类捕食种群是非结构化建模的,并由一个常微分方程(ODE)描述。轮虫动力学的公式基于卵和成虫两个生命阶段的简单生理模型。当能量缓冲液达到阈值时会产生一个鸡蛋。控制方程是具有初始和边界条件的偏微分方程(PDE)。种群模型以及营养素动力学方程式形成了一个恒化器模型。实验数据用于估计模型参数。使用显式有限差分(FD)技术获得的结果与自动扶梯棚车列车(EBT)方法获得的结果相当。这证明了使用快速FD方法进行参数估计的合理性,该过程涉及对模型方程式的反复求解。 (C)2000学术出版社。 [参考:24]

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