Thermal properties and water content of two tropical wood species as a function of the air relative humidity.

IF 1.7 4区 工程技术 Q3 MECHANICS Heat and Mass Transfer Pub Date : 2023-12-04 DOI:10.1007/s00231-023-03442-z
Francklin Bobda, Rachel Raïssa Ngono Mvondo, Malick Diakhate, Pierre Meukam
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Abstract

This work aims to use experimental data from thermal characterization and adsorption/desorption isotherms of two tropicals woods species (Ayous and Tali) to propose an empirical model of thermal conductivity as a function of air relative humidity. A static gravimetric method was used to determine the adsorption isotherms of Tali and Ayous at 30 °C, and 40 °C. The GAB, Henderson and Nelson models were used to predict the isotherms. Exponential models of thermal conductivity and volumetric heat capacity with air relative humidity were proposed. The influence of hysteresis phenomenum was studied on these properties. The reliability of the developed empirical correlation between thermal properties and air relative humidity was evaluated by comparing the experimental and predicted curves. The relative errors were less than 8% for both Ayous and Tali. The correlation coefficients obtained were greater than 99% for both species in adsorption and desorption. There was also an increase in the equilibrium water content of both species with the increase in water activity at constant temperature. The correlation coefficients between GAB model and sorption experimental data were lower than 99% when Ayous was subjected to a temperature of 40 °C in adsorption and Tali to a temperature of 40 °C in desorption.

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两种热带木材的热特性和含水量随空气相对湿度的变化。
本研究旨在利用两种热带树种(Ayous和Tali)的热表征和吸附/解吸等温线的实验数据,提出热导率作为空气相对湿度函数的经验模型。采用静态重量法测定了Tali和Ayous在30℃和40℃下的吸附等温线。采用GAB、Henderson和Nelson模型预测等温线。提出了导热系数和体积热容随空气相对湿度变化的指数模型。研究了磁滞现象对这些性能的影响。通过对比实验曲线和预测曲线,评价了热性能与空气相对湿度之间经验相关性的可靠性。Ayous和Tali的相对误差都小于8%。得到的吸附和解吸相关系数均大于99%。在恒温条件下,随着水活度的增加,两种植物的平衡含水量也有所增加。当Ayous在40℃的吸附温度下,Tali在40℃的脱附温度下,GAB模型与吸附实验数据的相关系数均小于99%。
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来源期刊
Heat and Mass Transfer
Heat and Mass Transfer 工程技术-力学
CiteScore
4.80
自引率
4.50%
发文量
148
审稿时长
8.0 months
期刊介绍: This journal serves the circulation of new developments in the field of basic research of heat and mass transfer phenomena, as well as related material properties and their measurements. Thereby applications to engineering problems are promoted. The journal is the traditional "Wärme- und Stoffübertragung" which was changed to "Heat and Mass Transfer" back in 1995.
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