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Olefin Mixture Direct Sequence Energy Retrofitting: Feed Compositions Sensitivity Analysis

机译:烯烃混合物直接序列能改装:饲料组合物敏感性分析

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The objective of this research is to retrofit the Olefin Mixture (OM) direct sequence and to analyze the sensitivity with respect to the feed composition. In order to perform the study and analysis, a methodology for retrofitting the direct sequence and analyzing the sensitivity with respect to the feed composition was developed. In Stage 1, a short-cut distillation column design method of process simulator (Aspen HYSYS) is used to simulate the direct sequence. The energy used to separate individual component in the base sequence is analyzed and taken as a reference. In Stage 2, an optimal OM sequence is determined using driving force method. All individual driving force curves for all adjacent components are plotted and the optimal sequence is determined based on the plotted driving force curves. Once the optimal OM sequence has been determined, the new optimal sequence is then simulated in stage 3 using short-cut distillation column design method (using Aspen HYSYS), where the energy used in the optimal OM sequence is analyzed. Finally, the energy used in the optimal OM sequence is compared with the direct, direct-indirect and random sequence in Stage 4. The gains of each sequence are then calculated using the energy as the basis for the sensitivity analysis. From the results obtained, it can be concluded that it is possible to retrofit the direct sequence using the driving force method for better improvement in terms of energy consumptions and sensitivity.
机译:该研究的目的是改进烯烃混合物(OM)直接序列并分析饲料组合物的敏感性。为了进行研究和分析,开发了一种改造直接序列和分析饲料组合物的敏感性的方法。在第1阶段,使用过程模拟器(Aspen Hysys)的短切蒸馏柱设计方法来模拟直接序列。分析用于分离碱基序列中各个组分的能量作为参考。在阶段2中,使用驱动力方法确定最佳OM序列。绘制所有相邻部件的所有单独驱动力曲线,并且基于绘制的驱动力曲线确定最佳序列。一旦确定了最佳OM序列,则使用短切蒸馏塔设计方法(使用ASPEN HYSYS),在阶段3中模拟新的最佳序列,其中分析了最佳OM序列中使用的能量。最后,将最佳OM序列中使用的能量与阶段4中的直接,直接间接和随机序列进行比较。然后使用能量作为敏感性分析的基础计算每种序列的增益。从获得的结果中,可以得出结论,可以使用驱动力方法改造直接序列,以便能够更好地改善能量消耗和灵敏度。

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