Enhanced Radiative Heat Transfer Via the Coupling of Multi-Particle Interactions with Combined Surface Models

18 Pages Posted: 29 May 2023

See all articles by Yong Zhang

Yong Zhang

Harbin Institute of Technology

Jian-You Wang

Harbin Institute of Technology

Fuqiang Wang

Harbin Institute of Technology

Zhi-Ming Cai

affiliation not provided to SSRN

Hong-Liang Yi

Harbin Institute of Technology; Harbin Institute of Technology - School of Energy Science and Engineering

Abstract

Radiative heat transfer (RHT) has been playing a pivotal role in the study of all length scales from macroscopic to microscopic. This work aims to theoretically enhance the RHT between nanoparticles in multi-particle and slab systems. The results show that the strong coupling between the multi-particle interactions and the combined slab surface modes including transmission and reflection can significantly enhance the inter-particle RHT at a proper slab thickness, and the maximum amplification ratio can reach up to two orders of magnitude. For larger thicknesses of the slab, the RHT decreases due to the weakening of coupled evanescent models. In addition, we show that adding graphene sheets to both sides of the middle slab produces a surface hybrid model, which can regulate the coupling properties of multi-particles and the slab by changing the chemical potential of graphene. When the resonance frequency of nanoparticles is higher than that of the slab model, the RHT between the particles at both ends increases. Instead, the conclusion is the opposite. This work may exhibit potential applications for enhancing, guiding, and regulating contactless energy management in complex many-body systems at mesoscopic scales.

Keywords: Radiative heat transfer, Multi-particle interaction, Transmission modes, Reflection modes, graphene

Suggested Citation

Zhang, Yong and Wang, Jian-You and Wang, Fuqiang and Cai, Zhi-Ming and Yi, Hong-Liang, Enhanced Radiative Heat Transfer Via the Coupling of Multi-Particle Interactions with Combined Surface Models. Available at SSRN: https://ssrn.com/abstract=4461683 or http://dx.doi.org/10.2139/ssrn.4461683

Yong Zhang (Contact Author)

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Jian-You Wang

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Fuqiang Wang

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Zhi-Ming Cai

affiliation not provided to SSRN ( email )

No Address Available

Hong-Liang Yi

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Harbin Institute of Technology - School of Energy Science and Engineering ( email )

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
22
Abstract Views
149
PlumX Metrics