Chaari Anis, Giraud-Moreau Laurence, Grosges Thomas, Barchiesi Dominique
Group for Automatic Mesh Generation and Advanced Methods, Gamma3 (UTT-INRIA), University of Technology of Troyes, 12 rue Marie Curie, CS 42060, 10004 Troyes Cedex, France.
ScientificWorldJournal. 2014 Mar 24;2014:794630. doi: 10.1155/2014/794630. eCollection 2014.
An accurate computation of the temperature is an important factor in determining the shape of a bubble around a nanowire immersed in a liquid. The study of the physical phenomenon consists in solving a photothermic coupled problem between light and nanowire. The numerical multiphysic model is used to study the variations of the temperature and the shape of the created bubble by illumination of the nanowire. The optimization process, including an adaptive remeshing scheme, is used to solve the problem through a finite element method. The study of the shape evolution of the bubble is made taking into account the physical and geometrical parameters of the nanowire. The relation between the sizes and shapes of the bubble and nanowire is deduced.
精确计算温度是确定浸没在液体中的纳米线周围气泡形状的一个重要因素。对这一物理现象的研究在于求解光与纳米线之间的光热耦合问题。数值多物理模型用于研究通过纳米线光照产生的温度变化和气泡形状。包括自适应重新网格化方案在内的优化过程用于通过有限元方法解决该问题。考虑纳米线的物理和几何参数对气泡的形状演变进行研究。推导了气泡与纳米线的尺寸和形状之间的关系。