用于生产清洁氢气和电力的混合太阳能-风能系统的热经济优化

IF 8 Q1 ENERGY & FUELS
Ali Bedakhanian , Akbar Maleki , Siavash Haghighat
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引用次数: 0

摘要

随着全球气候变暖的加剧和能源消耗的增长,新方法和高效能源系统优先于传统方法。本文主要研究了一种以清洁氢气和发电为目的的平板太阳能集热器混合风能-太阳能系统的提出和技术经济研究。所提出的系统是平板太阳能集热器、风力涡轮机、有机朗肯循环和质子交换膜电解器的组合。选取了风速、涡轮进口温度、入射太阳辐照度以及集热器表面积和流体质量流量等相关参数作为决策变量,考察了这些参数对方案的火用效率和火用损失的影响。目标函数包括总成本率和总用能效率。利用Nelder-Mead优化方法和EES软件实现上述目标,并对伊朗两个高潜力城市进行了对比案例研究。优化结果表明,该系统的能源效率为13.35%,成本为25.48美元/小时。灵敏度分析表明,太阳能集热器面积、入射太阳辐照度、风速和涡轮进口温度的增加均能提高系统的技术性能。此外,对火用损失进行了分析,指出提高汽轮机进口温度不仅提高了系统的性能,而且降低了系统的火用损失。对比Semnan和Isfahan的发电量,两个城市一年的发电量分别为1192613.4和1188897.6。Semnan市的产氢量为2762.86 kg/h,其系统性能优于伊斯法罕市的2757.004 kg/h。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermo-economic optimization of a hybrid solar-wind energy system for the production of clean hydrogen and electricity
With the increasing warming of the atmosphere and the growth of energy consumption in the world, new methods and highly efficient energy systems take precedence over conventional methods. This study concentrates on the proposition and techno-economical investigation of a hybrid wind-solar energy system encompassing flat plate solar collector for the purpose of clean hydrogen and electricity generation. The proposed system is a combination of flat plate solar collectors, wind turbine, organic Rankine cycle, and proton exchange membrane electrolyser. Wind speed, turbine inlet temperature, incident solar irradiation, and collector-related parameters including its surface area and fluid mass flow rate are selected decision variables, the impacts of which on the exergy efficiency and exergy loss of the scheme are examined. The objective functions included total cost rate and total exergy efficiency. The Nelder-Mead optimization method and EES software were utilized to achieve the mentioned goals, followed by a comparative case study was conducted for two cities with high potential in Iran. According to the optimization results, the exergy efficiency of 13.35 % was achieved while the cost rate was equal to $25.48 per hour, respectively. According to the sensitivity analysis, the increment in the solar collector area, incident solar irradiation, wind speed, and turbine inlet temperature improved the system's technical performance. Furthermore, the exergy loss analysis pointed out that the increment in the turbine inlet temperature, not only improves the system's performance, but also reduces the exergy loss. A comparison of the electricity production in Semnan and Isfahan showed that 1192613.4 and 1188897.6 of electricity were produced in the two cities in one year, respectively. The city of Semnan with the production of 2762.86 kg/h of hydrogen presented better system performance compared to the city of Isfahan with 2757.004 kg/h of hydrogen.
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来源期刊
Energy nexus
Energy nexus Energy (General), Ecological Modelling, Renewable Energy, Sustainability and the Environment, Water Science and Technology, Agricultural and Biological Sciences (General)
CiteScore
7.70
自引率
0.00%
发文量
0
审稿时长
109 days
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