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Numerical and Analytical Investigation of Chemotaxis Models

机译:趋化式模型的数值和分析研究

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The Keller-Segel system is a linear parabolic-elliptic system, which describes the aggregation of slime molds resulting from their chemotactic features. By chemotaxis we understand the movement of an organism (like bacteria) in response to chemical stimulus, for example attraction by certain chemicals in the environment. In this paper, we use the results of a paper by Zhou and Saito to validate our finite volume method with respect to blow-up analysis and equilibrium solutions. Based on these results, we study model variations and their blow-up behavior numerically. We will discuss the question whether or not conservative numerical methods are able to model a blow-up behavior in the case of non-global existence of solutions.
机译:Keller-Segel系统是一种线性抛物型椭圆体系,其描述了由其趋化特征产生的粘液模具的聚集。通过趋化性,我们了解有机体(如细菌)的运动响应化学刺激,例如通过环境中某些化学品的吸引力。在本文中,我们使用Zhou和Saito使用纸张的结果来验证我们关于爆破分析和平衡溶液的有限体积方法。根据这些结果,我们在数值上研究模型变化及其爆破行为。我们将讨论保守数值方法是否能够在非全球性解决方案存在的情况下模拟爆炸行为的问题。

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