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首页> 外文期刊>SIAM Journal on Applied Mathematics >NUMERICAL SOLUTION OF TRANSPORT EQUATIONS FOR BACTERIAL CHEMOTAXIS - EFFECT OF DISCRETIZATION OF DIRECTIONAL MOTION
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NUMERICAL SOLUTION OF TRANSPORT EQUATIONS FOR BACTERIAL CHEMOTAXIS - EFFECT OF DISCRETIZATION OF DIRECTIONAL MOTION

机译:细菌轴色谱迁移方程的数值解-方向运动离散的效应。

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A mathematical model proposed by Alt [J. Math. Biol., 9 (1980), pp. 147-177] to describe chemotactic bacterial migration is studied, and solutions to this model are compared to solutions of a simpler model proposed by Rivero et al. [Chemical Engineering Science, 44 (1989), pp. 2881-2897]. It is found that a discretized version of Alt's model produces solutions similar to the continuous model, even at very coarse discretization. The relationship between the discretized Alt model and the model of Rivero et al. is elucidated, and it is found that a slightly modified version of the Rivero et al. model produces solutions similar to those of the Alt model for systems with one- and two-dimensional attractant gradients, suggesting that the simple and easy-to-use Rivero et al. model (after slight modification) is adequate for modeling bacterial behavior within the parameter ranges investigated. A preliminary investigation of the use of the lattice Boltzmann method for the study of bacterial migration is reported. [References: 32]
机译:Alt提出的数学模型[J.数学。 [9](Biol。,9(1980),pp.147-177)已被研究,以描述趋化细菌的迁移,并将该模型的解决方案与Rivero等人提出的更简单模型的解决方案进行了比较。 [Chemical Engineering Science,44(1989),pp.2881-2897]。我们发现,即使在非常粗略的离散化条件下,Alt模型的离散化版本也可以产生类似于连续模型的解决方案。离散Alt模型与Rivero等人的模型之间的关系。阐明,并且发现Rivero等人的稍微修改的版本。对于一维和二维引诱剂梯度的系统,该模型产生的解类似于Alt模型的解,这表明Rivero等人的方法简单易用。模型(略微修改后)足以在所研究的参数范围内对细菌行为进行建模。报道了使用格子玻尔兹曼方法进行细菌迁移研究的初步研究。 [参考:32]

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