LAPSE:2023.35630
Published Article
LAPSE:2023.35630
Investigation on Effective Thermal Conductivity of Fibrous Porous Materials as Vacuum Insulation Panels’ Core Using Lattice Boltzmann Method
Bangqi Chen, Ankang Kan, Zhaofeng Chen, Jiaxiang Zhang, Lixia Yang
May 23, 2023
Abstract
Vacuum Insulation Panels (VIPs) provide significant adiabatic performance for heat/cooling systems to reduce energy consumption. The application of fibrous porous material (FPM) as the ideal core of VIPs has gained global attention in recent decades. The microstructure and physical properties of FPMs, filled as novel VIPs’ core material, and holding superior thermal performance, affected effective thermal conductivity (ETC) greatly. Aiming to deeply understand heat transfer mechanisms, a holistic simulation method that combined with a developed 3D FPM structure generation method and a D3Q15-Lattice Boltzmann method (LBM) is proposed to simulate the heat transfer in FPM and to illuminate the influence factors of ETC on the microstructure of FPM in a vacuum. The improved and modified mesoscopic 3D fibrous random micro-structure generation approach involved five structural parameters: generation probability of nucleus growth, fiber length, diameter, coincidence rate, and orientation angle. The calculation model of ETC is established, and the discrete velocity, distribution, evolution, and boundary conditions of D3Q15-LBM are invested in detail. The model is validated with influences of different microstructure parameters. It indicated that FPM with finer diameter, smaller average pore size, and bigger orientation angle easily gain the lower ETC in a vacuum. The ETC was also affected by the orientation angles of fibers. The more the heat transfer direction is inconsistent with the length direction of the fiber, the better the adiabatic performance is. The reliability of the model is verified by comparison, and this work is a reference to optimize the fibrous core of VIPs.
Keywords
effective thermal conductivity, fibrous porous materials, Lattice Boltzmann method, mesoscopic scale, vacuum insulation panel
Subject
Suggested Citation
Chen B, Kan A, Chen Z, Zhang J, Yang L. Investigation on Effective Thermal Conductivity of Fibrous Porous Materials as Vacuum Insulation Panels’ Core Using Lattice Boltzmann Method. (2023). LAPSE:2023.35630
Author Affiliations
Chen B: Merchant Marine College, Shanghai Maritime University, Shanghai 201306, China
Kan A: Merchant Marine College, Shanghai Maritime University, Shanghai 201306, China [ORCID]
Chen Z: College of Material Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China
Zhang J: Merchant Marine College, Shanghai Maritime University, Shanghai 201306, China
Yang L: College of Material Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China
Journal Name
Energies
Volume
16
Issue
9
First Page
3692
Year
2023
Publication Date
2023-04-25
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en16093692, Publication Type: Journal Article
Record Map
Published Article

LAPSE:2023.35630
This Record
External Link

https://doi.org/10.3390/en16093692
Publisher Version
Download
Files
May 23, 2023
Main Article
License
CC BY 4.0
Meta
Record Statistics
Record Views
362
Version History
[v1] (Original Submission)
May 23, 2023
 
Verified by curator on
May 23, 2023
This Version Number
v1
Citations
Most Recent
This Version
URL Here
https://psecommunity.org/LAPSE:2023.35630
 
Record Owner
Calvin Tsay
Links to Related Works
Directly Related to This Work
Publisher Version
(0.1 seconds)

[0.1 s]