首页> 外文会议>World Hydrogen Energy Conference >Stochastic Nonlinear Dynamic Characteristics and Safe Basin of Li-doped Graphene-absorbing Hydrogen Atoms Subjected to Thermal Perturbation
【24h】

Stochastic Nonlinear Dynamic Characteristics and Safe Basin of Li-doped Graphene-absorbing Hydrogen Atoms Subjected to Thermal Perturbation

机译:锂掺杂石墨烯吸收氢原子的随机非线性动态特性和安全盆地进行热扰动

获取原文

摘要

Thermal perturbation may induce complex motion of grapheme-absorbing hydrogen atoms, which causes the escape of adsorbed hydrogen atoms. The area where hydrogen atoms cannot escape from graphene is defined as safe basin. In this article, stochastic nonlinear dynamic characteristics and safe basin of Li-doped graphene-absorbing hydrogen atoms subjected to thermal perturbation are studied. The interaction of hydrogen atoms to graphene is regarded as white noise. The nonlinear dynamic model of Li-doped graphene impacted by hydrogen atoms is developed, in which the effect of Ni irons on the graphene stiffness is considered. The conditions of noise-induced chaotic response are obtained using stochastic Melnikov integral method. In addition, the fractal boundary of the system safe basin is provided. Finally, the reliability function of the system is solved. Theoretical analysis and numerical simulation show that the boundary of safe basin has fractal characteristics, which means chaos induced by noise; the area of safe basin decreases when the intensity of the noise increases; the inhomogeneity of graphene stiffness can affect the system safe basin, which decides the actual hydrogen storage capacity of graphene. The results of this paper are helpful to the graphene application in hydrogen storage fields.
机译:热扰动可以诱导图形吸收氢原子的复杂运动,这导致吸附的氢原子的逸出。氢原子不能从石墨烯逃逸的区域定义为安全盆。在本文中,研究了对经受热扰动进行热扰动的Li-掺杂石墨烯吸收氢原子的随机非线性动态特性和安全盆地。氢原子对石墨烯的相互作用被认为是白噪声。开发了由氢原子冲击的Li掺杂石墨烯的非线性动态模型,其中考虑了Ni铁杆对石墨烯刚度的影响。利用随机喇叭米米科夫积分法获得噪声引起的混沌响应的条件。此外,提供了系统安全盆地的分形边界。最后,解决了系统的可靠性函数。理论分析和数值模拟表明,安全盆地的边界具有分形特征,这意味着噪声诱导的混沌;当噪声强度增加时,安全盆地的区域降低;石墨烯刚度的不均匀性可以影响系统安全盆地,其决定石墨烯的实际储氢容量。本文的结果有助于石墨烯应用在储氢场中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号