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廖爱雪, 王哲慧, 孟凡帅, 谢大祥, 左宁, 王磊, 李书珍, 莫米诺. 醋酸乙烯酯装置换热网络优化研究[J]. 应用技术学报, 2020, 20(4): 328-333,349. DOI: 10.3969/j.issn.2096-3424.2020.04.004
引用本文: 廖爱雪, 王哲慧, 孟凡帅, 谢大祥, 左宁, 王磊, 李书珍, 莫米诺. 醋酸乙烯酯装置换热网络优化研究[J]. 应用技术学报, 2020, 20(4): 328-333,349. DOI: 10.3969/j.issn.2096-3424.2020.04.004
LIAO Aixue, WANG Zhehui, MENG Fanshuai, XIE Daxiang, ZUO Ning, WANG Lei, LI Shuzhen, MOMINOU Nchare. Study on Energy Conservation of Vinyl Acetate Device by Optimization[J]. Journal of Technology, 2020, 20(4): 328-333,349. DOI: 10.3969/j.issn.2096-3424.2020.04.004
Citation: LIAO Aixue, WANG Zhehui, MENG Fanshuai, XIE Daxiang, ZUO Ning, WANG Lei, LI Shuzhen, MOMINOU Nchare. Study on Energy Conservation of Vinyl Acetate Device by Optimization[J]. Journal of Technology, 2020, 20(4): 328-333,349. DOI: 10.3969/j.issn.2096-3424.2020.04.004

醋酸乙烯酯装置换热网络优化研究

Study on Energy Conservation of Vinyl Acetate Device by Optimization

  • 摘要: 采用夹点技术和Aspen Plus软件,建立换热网络模拟流程,对醋酸乙烯酯生产装置的换热网络进行优化,并将模拟计算结果与工业数据对比。计算结果表明:建立的换热网络模拟流程计算结果与工业实际数据具有较好的吻合性;确定了装置的最小换热温差为12℃、装置最小热公用工程为548 MW、最小冷公用工程为585 MW;优化后装置冷、热公用工程节能潜力分别为184.5 MW和149.7 MW;对换热网络中不符合夹点规则的换热匹配进行改造,提高能量的回收率,减少了11台热交换设备,热公用工程降低31.5%,冷公用工程降低27.3%,与原来工业装置相比,冷热公用工程总能耗降低29.5%。该模拟技术适用于其他生产装置换热网络的优化。

     

    Abstract: To meet the energy consumption target of "Made in China 2025" in 2020, the heat exchanger network of the existing vinyl acetate production plant was optimized using pinch technology by Aspen Plus software. The energy consumption of the plant was analyzed to propose energy-saving measures. By comparing the simulation results with the actual production data, it can be seen that the heat transfer model can reflect the energy consumption of the device, and the simulation results can guide the further energy saving research of the device. The optimization results show that the minimum heat transfer temperature difference of the device is set at 12℃. The minimum heat utility and cold utility are determined to be 548 MW and 585 MW by using the temperature-enthalpy combination curve. After optimization, the energy saving potential of the cold and hot utilities is 184.5 MW and 149.8 MW, respectively. The heat transfer matching that does not conform to the pinch rule in the heat exchange network is reformed to improve the energy recovery rate. A new heat exchange is needed in the reformed scheme. The energy consumption of the heat project and the cold utility project is reduced by 31.5% and 27.3%, respectively. Compared with the original industrial plant, the decrease in the energy consumption is 29.5%, reaching the decrease of energy consumption in 2020. The simulation technology is also applicable to an optimal design of heat exchanger networks for other production devices.

     

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