【24h】

THE FOURIER LAW AT THE MACRO AND NANOSCALE

机译:宏观和纳米级的傅里叶法

获取原文

摘要

The Fourier law implicitly assumes transient thermal disturbances are carried throughout the solid at an infinite velocity while not defining the carrier mechanism. Paradoxically, the phonon and electron carriers on which the Fourier law is based are limited to acoustic velocities. At the macroscale, the paradox is resolved by the thermal BB photons of QM that carry the Planck energy E = kT of the atoms in the disturbance throughout the solid at the speed of light. BB stands for blackbody and QM for quantum mechanics. The traditional Fourier equation in lattice temperature is expressed in terms of the Planck energy E of the atoms to show infinite carrier velocity is reasonably approximated by BB photons at the speed of light, thereby avoiding the unphysical alternative that absent BB photons the Fourier law is required to rely on thermal disturbances travelling at infinite velocity. Practically, the effect of BB photons on the accuracy of the Fourier solution is insignificant as the BB transient response of the semi-infinite solid is shown identical to that which includes the lag time caused by the speed of light. Fourier's law is not applicable at the nanoscale as by QM the Planck energy of the atom is not available to be carried through the solid by the BB photon.
机译:傅立叶定律隐含地假设在整个固体上以无限速度携带瞬态热干扰,同时没有定义载体机构。矛盾的是,傅立叶定律所基于的声子和电子载体限于声速。在Macroscale,悖论由QM的热BB光子分辨,其在光的速度下在整个固体中携带原子的稳定性E = Kt。 BB代表Quallum Mechanics的黑体和QM。晶格温度中的传统傅里叶方程在原子的普通载流子的型号方面表达,以显示无限的载流子,在光速下由Bb光子合理地近似,从而避免了不存在BB光子的不受神经的替代方案所需的傅立叶律依靠在无限​​速度下行进的热扰动。实际上,Bb光子对傅立叶溶液的精度的影响是微不足道的,因为半无限固体的BB瞬态响应示出到包括由光速引起的滞后时间。傅里叶定律不适用于纳米级,因为QM通过BB光子通过固体携带原子的普朗克能量。

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