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Exergoeconomic evaluation of waste heat power generation project employing organic Rankine cycle

机译:有机朗肯循环的余热发电项目的能效经济评价

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ORC (organic Rankine cycle) technology can effectively improve the efficiency of energy utilization by converting the low grade energy into electricity. Based on the components of ORC waste heat power generation system, a three-levels exergoeconomic evaluation (TLEEE) method is proposed and an actual project is evaluated. The system is divided into 3 levels, which are composed of 4 subsystems and 10 analysis objects. The evaluation indicators are proposed and calculated by correlation matrix. The TLEEE method of low-temperature waste heat power generation system is used for system performance analysis from three levels. The thermodynamic perfection of the total system is 79.73%. The ORC subsystem has the greatest exergy loss and the evaporator has the highest exergy loss among equipment. Compared with the previous project without ORC, the use of circulating water is reduced. It has a large effect on the cost of exergy flow associated with the condenser. In three different scenarios, the electricity production cost is reduced to 0.285, 0.205 and 0.186 Yuan/kWh, respectively. The largest annual exergy loss cost of the condenser indicates that the condenser should be optimized firstly from the viewpoint of exergy and economy. The industrial waste heat power generation project employing ORC can increase energy efficiency and reduce carbon dioxide emission by 5680.26 t per year. (C) 2019 Elsevier Ltd. All rights reserved.
机译:ORC(有机朗肯循环)技术可以通过将低等级能源转化为电能来有效提高能源利用效率。基于ORC余热发电系统的组成部分,提出了三级能效经济评价(TLEEE)方法,并对实际工程进行了评价。该系统分为3个级别,由4个子系统和10个分析对象组成。提出了评价指标,并通过相关矩阵进行了计算。低温余热发电系统的TLEEE方法从三个层面进行了系统性能分析。整个系统的热力学完善度为79.73%。在设备中,ORC子系统的最大火用损耗是最大的,而蒸发器的最大火用损耗是最大的。与以前没有ORC的项目相比,减少了循环水的使用。它对与冷凝器有关的火用流的成本有很大影响。在三种不同的情况下,电力生产成本分别降低到0.285、0.205和0.186元/ kWh。冷凝器的最大年度火用损失成本表明,从火用和经济的角度出发,应首先对冷凝器进行优化。使用ORC的工业余热发电项目可以提高能源效率,每年减少5680.26吨二氧化碳。 (C)2019 Elsevier Ltd.保留所有权利。

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