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Thermo-economic analysis and sizing of the components of an ejector expansion refrigeration system

机译:喷射器膨胀制冷系统组件的热经济分析和尺寸

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An ejector expansion refrigeration system (EERS) as an alternative system was proposed to supply the cold water for unit 132 of the second refinery of South Pars, Iran. A thermodynamic model based on energy and exergy analysis and an economic model according to the Total Revenue Requirement (TRR) method have been presented. Sizing of the main components of the system such as evaporator, condenser and ejector device were determined. The effect of the evaporation and condensing temperatures on the cost of the system were analyzed and the optimum values of the condensing and evaporation temperatures were obtained. The optimum pressure drop in suction nozzle was determined. The economic model takes into account the cost of the components, including amortization and maintenance, and the cost of electricity consumption. The results show, the amount of the fuel consumption and the total cost of the EERS are respectively 22% and 15.2% more efficient compared with a basic refrigeration system with an additional heat exchanger (HXRS). (c) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:提出了一种作为替代系统的喷射器膨胀制冷系统(EERS),为伊朗的南方第二炼油厂的单元132提供冷水。提出了一种基于能量和漏洞分析的热力学模型和根据总收入要求(TRR)方法的经济模式。确定了诸如蒸发器,冷凝器和喷射器装置的系统的主要部件的尺寸。分析了蒸发和冷凝温度对系统成本的影响,得到了冷凝和蒸发温度的最佳值。测定吸嘴中的最佳压降。经济模式考虑了组件的成本,包括摊销和维护,以及电力消耗的成本。结果表明,与具有额外热交换器(HXRS)的碱性制冷系统相比,燃料消耗量和eS的总成本分别为22%和15.2%。 (c)2017年Elsevier Ltd和IIR。版权所有。

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