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Exponential functional rigorous method for calculation of the number of theoretical plates in distillation column

机译:计算蒸馏塔理论塔板数的指数严格函数法

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摘要

An exponential functional rigorous calculation (EFRC) method for calculation of the number of theoretical plates in distillation column with the ideal system is proposed. In this method, the complex non-liner function describing the relation between the liquid compositions of arbitrary two theoretical plates is converted into the exponential function. For the sake of the linearization feature of the exponential function in logarithmic coordinates, the number of theoretical plates, feed location and gas or liquid composition of any theoretical plate can be obtained without stepwise plate-to-plate calculations. It can greatly help to improve the efficiency and accuracy of distillation design. And the new model is easier to be solved than Lewis method or Smoker method. The physical significances of the parameters in the EFRC model are analyzed considering the effects of the reflux ratio, relative volatility and feed phase condition, especially for that at limiting conditions. The new method can be applied to distillation design and rating, and is generalized from binary ideal system to multiple one. The EFRC method has been validated. The results indicate that the accuracy of the new method agrees well with that of the plate-to-plate calculations, and is better than that of Gilliland correlation.
机译:提出了用理想系统计算蒸馏塔理论塔板数的指数函数严格计算方法。在该方法中,将描述任意两个理论塔板的液体成分之间的关​​系的复非线性函数转换为指数函数。由于对数坐标中指数函数的线性化特征,无需逐步进行板对板计算,即可获得任何理论塔板的理论塔板数,进料位置以及气体或液体成分。它可以极大地帮助提高蒸馏设计的效率和准确性。并且新模型比Lewis方法或Smoker方法更容易求解。考虑到回流比,相对挥发度和进料阶段条件的影响,特别是在极限条件下的影响,分析了EFRC模型中参数的物理意义。该新方法可用于蒸馏设计和分级,并从二元理想系统推广到多种方法。 EFRC方法已经过验证。结果表明,该新方法的精度与板对板计算的精度相吻合,并且优于吉利兰相关性。

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