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Simultaneous estimation of VOCs diffusion and partition coefficients in building materials via inverse analysis

机译:通过反分析同时估算建筑材料中VOC的扩散和分配系数

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摘要

An analytic model describing the one-dimensional transient VOC diffusion in the building material slab was selected. An inverse analysis was applied to estimate the volatile organic compounds (VOCs) constant diffusion coefficient (D) and partition coefficient (K) in the building material. The present parameter estimation problem was solved with Levenberg-Marquardt's method of minimization of the ordinary least-squares norm. The effects of the number and the time step of measurements, errors involved in the initial concentration data in the building material, random errors involved in the measured VOCs concentration data in the chamber air and errors involved in the calculation of the mean convective mass transfer coefficient on the accuracy of estimates were studied. The first two factors were found to have significant effects on the accuracy of the estimates, while the effect of the third factor was insignificant. The results also indicate that D is insensitive to the errors involved in the mean convective mass transfer coefficient. The present study would be useful for obtaining material properties and helpful for designing and improving experiments.
机译:选择描述建筑材料板中一维瞬态VOC扩散的解析模型。应用逆分析来估计建筑材料中的挥发性有机化合物(VOC)恒定扩散系数(D)和分配系数(K)。目前的参数估计问题是使用Levenberg-Marquardt最小化普通最小二乘范数的方法解决的。测量次数和时间步长的影响,建筑材料中初始浓度数据涉及的误差,室内空气中VOCs浓度测量数据涉及的随机误差以及平均对流传质系数的计算涉及的误差对估计的准确性进行了研究。发现前两个因素对估计的准确性有重大影响,而第三个因素的影响则微不足道。结果还表明,D对平均对流传质系数所涉及的误差不敏感。本研究将有助于获得材料特性,并有助于设计和改进实验。

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