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Dynamic simulation and life cycle cost analysis of a MSF desalination system driven by solar parabolic trough collectors using TRNSYS software: A comparative study in different world regions

机译:使用TRNSYS软件的太阳抛抛槽收集器驱动的MSF海水淡化系统的动态仿真与生命周期成本分析:不同世界地区的比较研究

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摘要

In the present work, water desalination by solar energy is investigated based on life cycle cost. In the first step, regions under consideration are prioritized for solar energy utilization applying an appropriate ranking method based on desalinated water demand, saline water availability, annual average solar irradiation, and local water tensions. TRNSYS software is used for simulation and a multi-stage flash desalination system is defined in this software as a new component type by employing the Fortran program. Solar troughs and natural gas are used for solar energy extraction and heater, respectively. The considered system is investigated in seven different cities with high solar potential from the economic point of view. Also, an economic comparison is conducted in order to assess the multi-stage flash desalination system utilizing solar collector, auxiliary heater, and the system using natural gas without solar system. In this regard, the life cycle cost method is applied. The results of the study showed that using solar energy is more economical in comparison with natural gas for all of the case studies and the highest saving is obtained for Port Hedland in Australia. The lowest cycle cost of the system, utilizing solar energy and natural gas, is observed in Hurghada. In Hurghada, 88% of the energy required by the system is supplied by sun, and this city benefits the most from solar energy compared to other cities. Los Angeles and Manzanillo had the lowest share of solar energy at 59% and 57%, respectively.
机译:在本作工作中,根据生命周期成本,研究了太阳能的水脱盐。在第一步中,考虑所考虑的地区对于太阳能利用,适用于脱盐水需求,盐水供应,年平均太阳照射和局部水紧张局势的适当排名方法优先考虑。 Trnsys软件用于仿真,通过采用Fortran程序,在本软件中定义了多级闪光脱展系统作为新组件类型。太阳能槽和天然气分别用于太阳能提取和加热器。在经济观点来看,在七个不同城市的七个不同城市调查了考虑的系统。此外,进行了经济比较,以评估利用太阳能收集器,辅助加热器和系统使用无太阳系的天然气的多级闪蒸系统。在这方面,应用生命周期成本方法。该研究的结果表明,与所有案例研究的天然气相比,使用太阳能更经济,并在澳大利亚港口港获得最高储蓄。在赫尔格达观察到系统的最低循环成本,利用太阳能和天然气。在赫尔格达,系统提供了88%的系统所需的能量,与其他城市相比,这座城市从太阳能中受益匪浅。洛杉矶和曼扎尼略的太阳能分别占上59%和57%的最低份额。

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