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Energy, exergy and environmental (3E) analysis of the existing CHP system in a petrochemical plant

机译:石化厂现有CHP系统的能源,火用和环境(3E)分析

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In this paper an existing combined heat and power (CHP) system in a Petrochemical Plant is analyzed in terms of energy, exergy and environmental (3E) aspects. The system includes steam generators, turbo-generators and a steam distribution network for steam consumers. The system was simulated using Cycle Tempo software. The simulation revealed that the energy, exergy, heat and total efficiencies are %8.22, %7.87, %48.92 and %56.8, respectively. Based on the results, the main exergy destruction is related to boilers, steam pressure reduction stations (HPS/MPS-MPS/LPS) and turbo-generators, respectively. Regarding the high temperature of the exhaust gases from the boilers, adding an economizer stage can increase the efficiency of the boiler and decrease the rate of CO2 production. In addition, the off-grid network of the studied petrochemical complex has also caused stumbling blocks. In order to increase the efficiency of the cycle, eliminating the exergy waste, and connecting to the nation-wide power network, it is recommended that a gas turbine and an HRSG be used instead of the boilers. This way, all the waste related to the boilers and pressure reduction stations will be minimized. Moreover, the risk of plant trip and the shut-down of all the process production lines will be solved.
机译:本文从能源,火用和环境(3E)方面分析了石化厂现有的热电联产(CHP)系统。该系统包括蒸汽发生器,涡轮发电机和用于蒸汽消耗者的蒸汽分配网络。使用Cycle Tempo软件对系统进行了仿真。模拟显示能量,火用,热和总效率分别为%8.22,%7.87,%48.92和%56.8。根据结果​​,主要的火用破坏分别与锅炉,蒸汽减压站(HPS / MPS-MPS / LPS)和涡轮发电机有关。关于锅炉废气的高温,增加省煤器级可以提高锅炉的效率并降低二氧化碳的产生速度。此外,所研究的石化厂的离网网络也造成了绊脚石。为了提高循环效率,消除火用浪费并连接到全国范围的电网,建议使用燃气轮机和HRSG代替锅炉。这样,与锅炉和减压站有关的所有废物将被最小化。此外,还将解决工厂停工和关闭所有流程生产线的风险。

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