首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Application of advanced thermodynamics, thermoeconomics and exergy costing to a Multiple Effect Distillation plant: In-depth analysis of cost formation process
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Application of advanced thermodynamics, thermoeconomics and exergy costing to a Multiple Effect Distillation plant: In-depth analysis of cost formation process

机译:先进的热力学,热经济学和火用成本法在多效蒸馏厂中的应用:成本形成过程的深入分析

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摘要

The high thermal energy consumption per m(3) fresh water is one of the main barriers to the spread of thermally driven desalination processes and has limited their use to applications in countries with high reserves of fossil fuels or to specific technological solutions like dual purpose cogeneration plants and solar desalination systems. Being energy conversion efficiency a major issue to improve the performance of thermally driven desalination plants, thermoeconomic analysis has been attracting the efforts of researchers for the identification of margins for process improvement. In this paper a rigorous exergy and thermoeconomic analysis is presented for an 8 effect forward feed Multiple Effect Distillation plant, based on models developed in Engineering Equation Solver. The innovative contribution lies in the detailed methodological formulation with explicative notes on the main assumptions and in the high level of disaggregation used, which allows us to follow each specific subprocess and thus to acquire an in-depth understanding of the whole cost formation process. The results indicate that the monetary value associated with the physical and chemical exergy flows highly vary throughout the plant and that the contribution to the final cost of fresh water is higher for the distillate produced in the last effects. (C) 2015 Elsevier B.V. All rights reserved.
机译:每m(3)淡水的高热能消耗是热驱动海水淡化工艺扩散的主要障碍之一,并将其​​使用限制在化石燃料储量高的国家或特定技术解决方案(如两用热电联产)中工厂和太阳能脱盐系统。作为能量转换效率是提高热力淡化厂性能的主要问题,热经济分析一直吸引着研究人员努力确定工艺改进的余量。本文基于在工程方程求解器中开发的模型,对8效正向进料多效蒸馏装置进行了严格的火用和热经济分析。创新的贡献在于详细的方法表述以及对主要假设的解释性注释,以及所使用的高度分解,这使我们能够遵循每个特定的子过程,从而对整个成本形成过程有深入的了解。结果表明,在整个工厂中,与物理和化学能动流相关的货币价值差异很大,并且对于最后产生的馏出物,淡水最终成本的贡献更高。 (C)2015 Elsevier B.V.保留所有权利。

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