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Wave Propagation in Excitable Media Through Randomly Distributed Heterogeneities: Simulations and Comparison to the Effective Medium Theory

机译:通过随机分布的非均质性在兴奋性介质中的波传播:与有效介质理论的模拟和比较

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The propagation of traveling waves in excitable media with randomly distributed diffusion coefficient is studied. If the characteristic size of the waves is much larger than the heterogeneity size an effective medium theory based on a self-consistent homogenization approach can be applied. The random distribution of the medium properties is produced by domains of two phases. In each phase the values of the diffusion coefficient are different. The characteristic size of the domains of the two phases is varied in the numerical simulations. The resulting velocities of the traveling waves found by numerical simulations of the random media are compared with the predictions of the effective medium theory. For large size of the heterogeneities in comparison with the diffusion length of the reaction-diffusion system the numerical results show deviations with respect to the predictions. * This research was supported by the German Science Foundation (DFG) within the framework of SFB 910 “Control of self-organizing nonlinear systems: Theoretical methods and concepts of application”
机译:研究了行波在具有随机分布扩散系数的可激发介质中的传播。如果波的特征尺寸远大于非均质尺寸,则可以应用基于自洽均质化方法的有效介质理论。介质性质的随机分布是由两相域决定的。在每个阶段,扩散系数的值都不同。在数值模拟中,两个相域的特征尺寸是变化的。通过随机介质的数值模拟发现的行波合成速度与有效介质理论的预测值进行了比较。对于较大的异质性,与反应扩散系统的扩散长度相比,数值结果表明相对于预测值存在偏差。 *这项研究得到德国科学基金会(DFG)在SFB 910“自组织非线性系统的控制:理论方法和应用概念”框架内的支持。

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