Modified ballistic-diffusive equations for obtaining phonon mean free path spectrum from ballistic thermal resistance: I. Introduction and validation of the equations

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초록

Phonon mean free path (MFP) spectra are essential for the accurate prediction and utilization of the classical size effect. Rebuilding an MFP spectrum from experimental data remains challenging. It requires solving the thermal transport phenomenon of a heat source of a given shape across the entire size range. Herein, to do this for a heat source embedded in an infinite medium, we derive a new set of modified ballistic-diffusive equations by analyzing the cause of the erroneous results observed in a steady- state solution of the original ballistic- diffusive equations. We demonstrate their ease and accuracy by obtaining the effective thermal conductivity for a spherical nanoparticle embedded in an infinite medium in an explicit closed-form and comparing it with that obtained by the Boltzmann transport equation (differences estimated as < 3%).

키워드

Phonon mean free patheffective thermal conductivityballistic thermal resistanceballistic-diffusive equationsphonon mean free path spectrumTRANSIENT HEAT-CONDUCTIONTHERMOELECTRIC PERFORMANCETRANSPORT
제목
Modified ballistic-diffusive equations for obtaining phonon mean free path spectrum from ballistic thermal resistance: I. Introduction and validation of the equations
저자
Kwon, OhmyoungWehmeyer, GeoffDames, Chris
DOI
10.1080/15567265.2019.1619885
발행일
2019-07-03
유형
Article
저널명
Nanoscale and Microscale Thermophysical Engineering
23
3
페이지
259 ~ 273