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Comparison of the levelized cost and thermoeconomic methodologies - Cost allocation in a solar polygeneration plant to produce power, desalted water, cooling and process heat

机译:分层成本和热经济方法的比较-太阳能多联产电厂用于发电,淡水,冷却和过程热的成本分配

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The present work shows a comparison between the levelized cost and the thermoeconomic methods in their application to assess the performance of a solar polygeneration plant. The aim is to analyze the costs allocation process, the unit specific costs of each product, as well as the energy and exergy efficiencies, which allows to identify the main advantages of both the evaluated methods. The methodology is applied in a case study configured by a concentrated solar power with thermal energy storage and backup system, combined to a multi-effect distillation plant, an absorption refrigeration plant, and a process heat module. The present study reveals that through the levelized cost method, the cost associated to the electricity generation is higher than it is by applying the thermoeconomic method, whereas the costs of water, cooling and process heat are significantly lower. Those differences represent an increase of about 35.1% in the case of the electricity, and a reduction in the cost associated to the water, cooling, and heat production by around 34.4%, 78.1%, and 97.6%, respectively. Results show that the thermoeconomic method is an equitable and rational cost allocation method which is suitable for a solar polygeneration plant. This method is recommended when a more precise analysis is required to assess the proper costs of different products, and for assessing the benefits of a polygeneration plant, when compared to stand-alone plants. However, the levelized cost method is a simple and fast method, and a deep knowledge of thermodynamics is not required, being recommended when in need to perform a first approach of the costs of each product.
机译:本工作显示了在平准化成本和热经济方法在评估太阳能多联产电厂的性能中的应用之间的比较。目的是分析成本分配过程,每种产品的单位特定成本以及能源和火用效率,从而可以确定两种评估方法的主要优势。该方法在案例研究中得到了应用,该案例研究由具有热能存储和备用系统的集中太阳能构成,并与多效蒸馏厂,吸收式制冷厂和过程加热模块结合使用。本研究表明,通过均摊成本法,与发电相关的成本高于采用热经济法的成本,而水,冷却和过程热的成本则明显较低。在电力方面,这些差异代表约35.1%的增长,与水,冷却和热力生产相关的成本分别下降了约34.4%,78.1%和97.6%。结果表明,热经济方法是一种公平合理的成本分摊方法,适用于太阳能多联产电厂。与独立工厂相比,当需要更精确的分析以评估不同产品的适当成本以及评估多联产工厂的收益时,建议使用此方法。但是,均摊成本法是一种简单而快速的方法,不需要热力学的深入知识,因此在需要执行每种产品成本的第一种方法时建议使用此方法。

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