Ran Junren, Ostoja-Starzewski Martin, Povstenko Yuriy
Department of Mechanical Science & Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Department of Mechanical Science & Engineering, Institute for Condensed Matter Theory and Beckman Institute, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Fractal Fract. 2021 Dec;5(4). doi: 10.3390/fractalfract5040229. Epub 2021 Nov 18.
An investigation of transient second sound phenomena due to moving heat sources on planar random media is conducted. The spatial material randomness of the relaxation time is modeled by Cauchy or Dagum random fields allowing for decoupling of fractal and Hurst effects. The Maxwell-Cattaneo model is solved by a second-order central differencing. The resulting stochastic fluctuations of Mach wedges are examined and compared to unperturbed Mach wedges resulting from the heat source traveling in a homogeneous domain. All the examined cases are illustrated by simulation movies linked to this paper.
对平面随机介质上移动热源引起的瞬态第二声现象进行了研究。弛豫时间的空间材料随机性由柯西或达古姆随机场建模,从而实现分形效应和赫斯特效应的解耦。麦克斯韦-卡塔尼奥模型通过二阶中心差分法求解。研究了马赫楔产生的随机波动,并与热源在均匀区域中移动产生的未受扰动的马赫楔进行了比较。所有研究案例都通过与本文相关的模拟影片进行了说明。