elib
DLR-Header
DLR-Logo -> http://www.dlr.de
DLR Portal Home | Imprint | Privacy Policy | Accessibility | Contact | Deutsch
Fontsize: [-] Text [+]

Network decomposition model to describe the solid and gaseous thermal conductivity in open-porous (nano)materials

Aney, Shivangi and Rege, Ameya (2025) Network decomposition model to describe the solid and gaseous thermal conductivity in open-porous (nano)materials. International Journal of Heat and Mass Transfer, 236 (2), p. 126316. Elsevier. doi: 10.1016/j.ijheatmasstransfer.2024.126316. ISSN 0017-9310.

[img] PDF - Published version
2MB

Official URL: https://www.sciencedirect.com/science/article/pii/S0017931024011451

Abstract

Understanding the interplay between the heat transport through the solid phase and the porous one may play a vital role in the inverse design of open-porous (nano)materials for thermal superinsulation applications. In this paper, we propose a mechanistic model using the finite element framework to independently describe the thermal transport through the solid phase and the porous one. The proposed model considers heat conduction through the solid and gaseous phases and does not account for convective and radiative effects. To this end, a network decomposition model is proposed wherein the open-porous material is decomposed into a solid network model (SNM) and a pore network model (PNM). An excluded volume concept is further introduced within the PNM, and is driven by the Knudsen diffusion for modelling in the case of nanoporous materials. The model predictions are validated with experimental data and the model is shown to accurately estimate the total thermal conductivity for nanoporous materials where convection and, at room temperature, radiation do not play any significant role.

Item URL in elib:https://elib.dlr.de/213126/
Document Type:Article
Title:Network decomposition model to describe the solid and gaseous thermal conductivity in open-porous (nano)materials
Authors:
AuthorsInstitution or Email of AuthorsAuthor's ORCID iDORCID Put Code
Aney, ShivangiShivangi.Aney (at) dlr.deUNSPECIFIEDUNSPECIFIED
Rege, AmeyaAmeya.Rege (at) dlr.dehttps://orcid.org/0000-0001-9564-5482UNSPECIFIED
Date:2025
Journal or Publication Title:International Journal of Heat and Mass Transfer
Refereed publication:Yes
Open Access:Yes
Gold Open Access:No
In SCOPUS:Yes
In ISI Web of Science:Yes
Volume:236
DOI:10.1016/j.ijheatmasstransfer.2024.126316
Page Range:p. 126316
Publisher:Elsevier
ISSN:0017-9310
Status:Published
Keywords:Open-porous cellular materials, Effective solid and gaseous thermal conductivity, Pore network connectivity, Excluded volume
HGF - Research field:Aeronautics, Space and Transport
HGF - Program:Transport
HGF - Program Themes:Road Transport
DLR - Research area:Transport
DLR - Program:V ST Straßenverkehr
DLR - Research theme (Project):V - FFAE - Fahrzeugkonzepte, Fahrzeugstruktur, Antriebsstrang und Energiemanagement
Location: Köln-Porz
Institutes and Institutions:Institute of Materials Research > Aerogels and Aerogel Composites
Deposited By: Rege, Dr. Ameya Govind
Deposited On:12 Mar 2025 10:50
Last Modified:12 Mar 2025 10:50

Repository Staff Only: item control page

Browse
Search
Help & Contact
Information
OpenAIRE Validator logo electronic library is running on EPrints 3.3.12
Website and database design: Copyright © German Aerospace Center (DLR). All rights reserved.