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An applicable method for efficiency estimation of operating tray distillation columns and its comparison with the methods utilized in HYSYS and Aspen Plus

机译:适用于估算塔板蒸馏塔效率的方法及其与HYSYS和Aspen Plus中使用的方法的比较

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摘要

Developing general methods that rely on column data for the efficiency estimation of operating (existing) distillation columns has been overlooked in the literature. Most of the available methods are based on empirical mass transfer and hydraulic relations correlated to laboratory data. Therefore, these methods may not be sufficiently accurate when applied to industrial columns. In this paper, an applicable and accurate method was developed for the efficiency estimation of distillation columns filled with trays. This method can calculate efficiency as well as mass and heat transfer coefficients without using any empirical mass transfer or hydraulic correlations and without the need to estimate operational or hydraulic parameters of the column. E.g., the method does not need to estimate tray interfacial area, which can be its most important advantage over all the available methods. The method can be used for the efficiency prediction of any trays in distillation columns. For the efficiency calculation, the method employs the column data and uses the true rates of the mass and heat transfers occurring inside the operating column. It is highly emphasized that estimating efficiency of an operating column has to be distinguished from that of a column being designed.
机译:在文献中忽略了开发依赖于塔数据来估计运行中(现有)蒸馏塔效率的通用方法。大多数可用的方法都是基于经验传质和与实验室数据相关的水力关系。因此,这些方法在应用于工业色谱柱时可能不够准确。在本文中,开发了一种适用且准确的方法来估算填充塔板的蒸馏塔的效率。该方法可以计算效率以及传质系数和传热系数,而无需使用任何经验传质或水力相关性,也无需估算塔的运行或水力参数。例如,该方法不需要估计塔盘界面面积,这可能是其相对于所有可用方法的最重要优势。该方法可用于蒸馏塔中任何塔板的效率预测。为了进行效率计算,该方法使用了色谱柱数据,并使用了在操作色谱柱内部发生的传质和传热的真实速率。高度强调的是,必须将操作塔的估算效率与正在设计的塔的估算效率区分开。

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  • 来源
    《Heat and Mass Transfer》 |2015年第10期|1393-1402|共10页
  • 作者

    Hamidreza Sadeghifar;

  • 作者单位

    Department of Petroleum and Chemical Engineering Sharif University of Technology">(1);

    Tehran Refinery">(2);

    Laboratory for Alternative Energy Conversion (LAEC) School of Mechatronic Systems Engineering Simon Fraser University">(3);

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  • 正文语种 eng
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