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ThermoData Engine (TDE): Software Implementation of the Dynamic Data Evaluation Concept. 8. Properties of Material Streams and Solvent Design

机译:ThermoData Engine(TDE):动态数据评估概念的软件实现。 8.材料流和溶剂设计的属性

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摘要

ThermoData Engine (TDE) is the first full-scale software implementation of the dynamic data evaluation concept, as reported in this journal. The present paper describes the first application of this concept to the evaluation of thermophysical properties for material streams involving any number of chemical components with assessment of uncertainties. The method involves construction of Redlich-Kister type equations for individual properties (excess volume, thermal conductivity, viscosity, surface tension, and excess enthalpy) and activity-coefficient models for phase equilibrium properties (vapor-liquid equilibrium). Multi-component models are based on those for the pure-components and all binary subsystems evaluated on demand through the TDE software algorithms. Models are described in detail, and extensions to the class structure of the program are provided. Novel program features, such as ready identification of key measurements for subsystems that can reduce the combined uncertainty for a particular stream property, are described. In addition, new product-design features are described for selection of solvents for optimized crystal dissolution, separation of binary crystal mixtures, and solute extraction from a single-component solvent. Planned future developments are summarized.
机译:如本期刊所述,ThermoData Engine(TDE)是动态数据评估概念的第一个全面软件实现。本文描述了该概念在涉及任何化学成分的物料流的热物理性质评估中的首次应用以及不确定性评估。该方法涉及针对单个属性(过量体积,导热系数,粘度,表面张力和过量焓)的Redlich-Kister型方程式的构建,以及针对相平衡属性(气液平衡)的活度系数模型的构建。多组件模型基于通过TDE软件算法按需评估的纯组件模型和所有二进制子系统的模型。详细描述了模型,并提供了对该程序的类结构的扩展。描述了新颖的程序功能,例如可以为子系统识别关键测量值,这些特征可以减少特定流属性的组合不确定性。此外,还介绍了新的产品设计功能,这些功能用于选择溶剂以优化晶体溶解,分离二元晶体混合物以及从单组分溶剂中提取溶质。总结了计划中的未来发展。

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