Javascript must be enabled to continue!
Effective thermal conductivity modeling with primary and secondary parameters for two-phase materials
View through CrossRef
In this article, the collocated parameter models are used to estimate the effective thermal conductivity of the two-phase materials including the effect of various inclusions in the unit cell. The algebraic equations are derived using unit cell based isotherm approach for two dimensional spatially periodic medium. The geometry of the medium is considered as a matrix of touching and non-touching in-line octagon and hexagon cylinders. The models are used to predict the thermal conductivity of numerous two-phase materials (maximum conductivity ratio of 1000 and concentration ranging between 0 and 1). The estimated thermal conductivity data is in good agreement with the experimental data within ?15.84%, ?18.14% maximum deviation, respectively, from octagon and hexagon cylinders for various two-phase systems. The obtained results are compared with a wide range of experimental data for various geometrical configurations to estimate the effective thermal conductivity of two-phase materials.
National Library of Serbia
Title: Effective thermal conductivity modeling with primary and secondary parameters for two-phase materials
Description:
In this article, the collocated parameter models are used to estimate the effective thermal conductivity of the two-phase materials including the effect of various inclusions in the unit cell.
The algebraic equations are derived using unit cell based isotherm approach for two dimensional spatially periodic medium.
The geometry of the medium is considered as a matrix of touching and non-touching in-line octagon and hexagon cylinders.
The models are used to predict the thermal conductivity of numerous two-phase materials (maximum conductivity ratio of 1000 and concentration ranging between 0 and 1).
The estimated thermal conductivity data is in good agreement with the experimental data within ?15.
84%, ?18.
14% maximum deviation, respectively, from octagon and hexagon cylinders for various two-phase systems.
The obtained results are compared with a wide range of experimental data for various geometrical configurations to estimate the effective thermal conductivity of two-phase materials.
Related Results
Experimental Investigation on the Effects of Proppant Migration and Placement on the Conductivity in Rough Fractures
Experimental Investigation on the Effects of Proppant Migration and Placement on the Conductivity in Rough Fractures
ABSTRACT
Proppant conductivity was usually measured under static or designed proppant concentration. The ISO 13503-5 standard provides specific experimental proce...
Thermal Effects in High Compactness CEA Stack
Thermal Effects in High Compactness CEA Stack
Thermal management is a pivotal aspect of stack durability and system operability. Consequently, understanding the thermal mapping within a stack based on its operating conditions ...
Near-Surface Properties of Europa Constrained by the Galileo PPR Measurements
Near-Surface Properties of Europa Constrained by the Galileo PPR Measurements
NASA's Europa Clipper mission will characterize the current and recent surface activity of the icy-moon Europa through a wide range of remote sensing observations. In particular, t...
Evaluating Stimulation Effectiveness in Unconventional Gas Reservoirs
Evaluating Stimulation Effectiveness in Unconventional Gas Reservoirs
AbstractThis paper presents production evaluation criteria that can be used to compare the overall stimulation effectiveness in unconventional gas reservoirs. Characterizing the "r...
Adaptive Thermal Conductivity Metamaterials: Enabling Active and Passive Thermal Control
Adaptive Thermal Conductivity Metamaterials: Enabling Active and Passive Thermal Control
The novel adaptive thermal metamaterial developed in this paper provides a unique thermal management capability that can address the needs of future spacecraft. While advances in m...
A comprehensive experimental investigation of different nanofluids effective thermal conductivity
A comprehensive experimental investigation of different nanofluids effective thermal conductivity
Abstract
Nanofluids, renowned for their superior thermal conductivity relative to traditional fluids, have attracted considerable interest for their prospective appl...
Measuring the thermal conductivity of sandstones
Measuring the thermal conductivity of sandstones
The sandstones of the Middle and Upper Buntsandstein are suitable host rocks for the installation of shallow geothermal systems due to their high thermal conductivities typically r...
Variable Thermal Conductivity Metamaterials Applied to Passive Thermal Control of Satellites
Variable Thermal Conductivity Metamaterials Applied to Passive Thermal Control of Satellites
Abstract
Active materials like the proposed variable thermal conductivity metamaterial enable new thermal designs and low-cost, low-power, passive thermal control. T...

