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A computational modeling and simulation of spatial dynamics in biological systems

机译:生物系统中空间动力学的计算建模与仿真

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Most of the biological processes occurring in nature exhibit physical movements at macro and micro levels. These movements are convection-diffusion type and are studied due to the important role they play in the mathematical modeling and simulation of dynamical systems. Accurate simulation of complicated dynamical system models are quite challenging. The focus of the current work is to design an effective meshless procedure for the simulation of reaction-convection-diffusion type of epidemiological models. The simulation results of the proposed method show much realistic finite time blow-up, which occurs due to calamitous spatial movements of the susceptible class of the population. Numerical simulations obtained through the proposed method are carefully vetted and found consistent with the earlier results. In some cases, improvement in the earlier results is reported as well.
机译:自然界中发生的大多数生物过程都表现出宏观和微观的物理运动。这些运动是对流扩散型的,由于它们在动力学系统的数学建模和仿真中起着重要作用,因此对其进行了研究。复杂的动力学系统模型的准确仿真非常具有挑战性。当前工作的重点是设计一种有效的无网格程序来模拟反应-对流-扩散类型的流行病学模型。所提方法的仿真结果显示出非常现实的有限时间爆炸,这是由于人口易感人群的灾难性空间运动引起的。通过提议的方法获得的数值模拟经过仔细审查,发现与早期结果一致。在某些情况下,也报告了早期结果的改进。

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