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Heat Transfer Investigation and Modeling of Heat Integrated Distillation Column 被引量:1

Heat Transfer Investigation and Modeling of Heat Integrated Distillation Column
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摘要 The high degree of reversibility of heat integrated distillation column(HIDiC) has been thermodynamically interpreted by the entropy method. In this paper, a heat transfer model and a more universal method were proposed, through which the overall heat transfer coefficient at different height of column under different operating conditions could be obtained before the experiment. Then the separation of a binary ethanol-water system was carried out experimentally as a case study to verify the heat transfer model and the aforementioned calculation method. The close results between the calculation, the simulation, and the experiments suggested that the proposed model and the calculation method in this paper were accurate and applicable. Meanwhile, it was demonstrated that the HIDiC shows obvious effect of reducing entropy increase and improving thermodynamic efficiency as compared to conventional distillation column. The high degree of reversibility of heat integrated distillation column (HIDiC) has been thermodynamically inter- preted by the entropy method. In this paper, a heat transfer model and a more universal method were proposed, through which the overall heat transfer coefficient at different height of column under different operating conditions could be obtained before the experiment. Then the separation of a binary ethanol-water system was carried out experimentally as a case study to verify the heat transfer model and the aforementioned calculation method. The close results between the calculation, the simulation, and the experiments suggested that the proposed model and the calculation method in this paper were accurate and applicable. Meanwhile, it was demonstrated that the HIDiC shows obvious effect of reducing entropy increase and improving thermodynamic efficiency as compared to conventional distillation column.
出处 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2018年第3期96-105,共10页 中国炼油与石油化工(英文版)
基金 supported by the National Key Research and Development Program of China(2017YFB0602500) the Foundation for High Level Talents of Hebei (A2017002032).
关键词 热转移 蒸馏 模特儿 转移系数 操作条件 热力学 可逆性 熵方法 heat integrated distillation column heat transfer model separation process
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