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A group contribution method for determination of thermal conductivity of liquid chemicals at atmospheric pressure

机译:用于确定液体化学物质在大气压下导热系数的基团贡献法

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摘要

In this communication, a group contribution method (GC) for the representation/prediction of liquid thermal conductivity of pure chemical compounds,most of which are organic in nature, is presented. Nearly 19,000 liquid thermal conductivity data at different temperatures compiled for 1635 chemical compounds were extracted fromthe DIPPR 801 database and used to develop the proposed model, aswell as to validate and optimize its parameters and evaluate its predictive capability. The parameters of themodel comprise the occurrences/existence of 49 chemical substructures plus temperature. Nearly 80% of the data set (15,450 data points) is used to develop the model parameters, 10% of the data set (1931 data points) was employed to validate and optimize themodel parameters, and the remaining data (1931 data points) were implemented to assess its predictive capability. The average absolute relative deviation of the model results with respect to the DIPPR 801 data is less than 7.1%. In terms of its simplicity and wide range of applicability, the model shows reasonable accuracy.
机译:在此交流中,提出了一种用于贡献/表示纯化合物的液体导热系数的基团贡献法(GC),其中大多数化合物本质上是有机的。从DIPPR 801数据库中提取了针对1635种化合物在不同温度下近19,000个液体热导率数据,并将其用于开发提出的模型,以及验证和优化其参数并评估其预测能力。该模型的参数包括49个化学亚结构的出现/存在以及温度。将近80%的数据集(15,450个数据点)用于开发模型参数,将10%的数据集(1931个数据点)用于验证和优化模型参数,其余数据(1931个数据点)用于实施以评估其预测能力。模型结果相对于DIPPR 801数据的平均绝对相对偏差小于7.1%。就其简单性和广泛适用性而言,该模型显示出合理的准确性。

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