Bianco Federico, Chibbaro Sergio, Vergni Davide, Vulpiani Angelo
Dipartimento di Fisica, Università La Sapienza, Piazzale Aldo Moro 2, I-00185 Roma, Italy.
Phys Rev E Stat Nonlin Soft Matter Phys. 2013 Jun;87(6):062811. doi: 10.1103/PhysRevE.87.062811. Epub 2013 Jun 19.
Reaction-diffusion processes in two-dimensional percolating structures are investigated. Two different problems are addressed: reaction spreading on a percolating cluster and front propagation through a percolating channel. For reaction spreading, numerical data and analytical estimates show a power-law behavior of the reaction product as M(t)~t(d(l)), where d(l) is the connectivity dimension. In a percolating channel, a statistically stationary traveling wave develops. The speed and the width of the traveling wave are numerically computed. While the front speed is a low-fluctuating quantity and its behavior can be understood using a simple theoretical argument, the front width is a high-fluctuating quantity showing a power-law behavior as a function of the size of the channel.
研究了二维渗流结构中的反应扩散过程。探讨了两个不同的问题:反应在渗流簇上的扩散以及前沿通过渗流通道的传播。对于反应扩散,数值数据和解析估计表明反应产物呈现幂律行为,即(M(t)\sim t^{d(l)}),其中(d(l))是连通性维度。在渗流通道中,会形成一个统计上稳定的行波。通过数值计算得到了行波的速度和宽度。虽然前沿速度是一个波动较小的量,其行为可以用一个简单的理论论证来理解,但前沿宽度是一个波动较大的量,呈现出作为通道尺寸函数的幂律行为。