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Effect of Moisture Movement on Tested Thermal Conductivity of Moist Aerated Autoclaved Concrete

机译:水分运动对加湿高压灭菌混凝土导热系数的影响

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摘要

The purpose of this work was to study both theoretically and experimentally the process of moisture redistribution and heat transfer due to phase changes during the tests of thermal conductivity in aerated autoclaved concrete (AAC) moist specimens. The different moisture contents of the test samples were obtained in climatic chamber at equilibrium conditions reached with constant air temperature and variable relative humidity. The moist specimens were sealed inside highly impermeable polyethylene bag, as required by UNI 10051, and placed in a heat flow meter apparatus. During the experimental thermal conductivity measurements, the temperature and heat flow rate were measured under transient and steady state conditions. A theoretical analysis of the heat and mass transfer process was performed and then a suitable numerical model was used to predict the moisture redistribution and heat transfer due to the phase changes. The theoretical model has been compared against the experimental data. Substantial agreement between numerical results and experimental data was found. Then several numerical simulations have been performed to study the influence of the errors due to phase changes and non-uniform moisture distribution during the test of thermal conductivity of moist AAC specimens.
机译:这项工作的目的是在理论和实验上研究加气高压釜混凝土(AAC)湿试样的导热系数测试过程中,由于相变而引起的水分重新分布和传热的过程。在恒定的空气温度和可变的相对湿度下达到的平衡条件下,在气候室内获得测试样品的不同水分含量。按照UNI 10051的要求,将潮湿的样品密封在高度不透水的聚乙烯袋中,然后放入热流量计中。在实验热导率测量期间,在瞬态和稳态条件下测量温度和热流率。对传热传质过程进行了理论分析,然后使用合适的数值模型来预测由于相变而引起的水分重新分布和传热。理论模型已经与实验数据进行了比较。发现数值结果与实验数据之间基本一致。然后进行了一些数值模拟,以研究在潮湿AAC样品的热导率测试过程中由于相变和水分分布不均匀而引起的误差的影响。

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