Energy, Exergy, and Exergoeconomic Analysis of Solar Thermal Power Plant Hybrid with Designed PCM Storage

M. Fani, N. Norouzi, Molood Ramezani
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引用次数: 10

Abstract

The tendency of renewable energies is one of the consequences of changing attitudes towards global energy issues. As a result, solar energy, which is the leader among renewable energies based on availability and potential, plays a crucial role in thoroughly filing global needs. Significant problems with the solar thermal power plants (STPP) are the operation time, which is limited by daylight and is approximately half of the power plants with fossil fuels, and the capital cost. In the present study, a new suggested sketch of adding latent heat storage (LHS) filled with commercial phase change material (PCM) to a 500-kW STPP case study has been investigated. Solar system details and irradiation amounts for a case study, including total and beam radiation have been determined. Also, the theoretical energetic and exergetic analysis of adding PCM storage to STTP is conducted, which showed a 19% improvement in the exergetic efficiency of the power plant to reach 30%. Besides, an optimized storage tank and appropriate PCM material have been investigated and selected concerning the practical limitations of the case study. By designing a new cycle, the LHS will be charged during daylight and will be discharged at night, doubling power plant operation time up to 2500[Formula: see text]h. Finally, exergoeconomic survey of STPP hybrid with PCM storage was carried out using Engineering Equation Solver (EES) program with genetic algorithm (GA) for three different scenarios, based on eight decision variables, which led us to decrease final product cost (electricity) in optimized scenario up to 30% compared to base case scenario from 28.99 to 20.27 $/kWh for the case study. Also, a comparison is made to demonstrate the effectiveness of the proposed new cycle on 250, 500, 1000, and 2000 kW STTPs.
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设计PCM储能的太阳能热电厂的能量、火用和耗力经济分析
可再生能源的发展趋势是人们对全球能源问题态度转变的结果之一。因此,太阳能作为可再生能源中可用性和潜力最大的能源,在彻底满足全球需求方面发挥着至关重要的作用。太阳能热电厂(STPP)的主要问题是运行时间,它受到日光的限制,大约是化石燃料发电厂的一半,以及资本成本。在本研究中,研究了一种新的建议草图,即在500千瓦STPP案例研究中加入商业相变材料(PCM)填充的潜热储存(LHS)。已经确定了一个案例研究的太阳系细节和辐照量,包括总辐射和光束辐射。同时,对STTP增加PCM储能系统进行了理论能量和火用分析,结果表明电厂的火用效率提高了19%,达到30%。此外,考虑到案例研究的实际局限性,对优化的储罐和合适的PCM材料进行了研究和选择。通过设计一个新的循环,LHS白天充电,晚上放电,使电厂运行时间增加一倍,达到2500小时。最后,基于8个决策变量,利用工程方程求解器(EES)程序和遗传算法(GA)对三种不同方案进行了STPP与PCM混合储能的努力经济性调查,结果表明,与基本方案相比,优化方案的最终产品成本(电力)从28.99美元/千瓦时降低到20.27美元/千瓦时,降低了30%。此外,还对250kw、500kw、1000kw和2000kw的sttp进行了比较,以证明所提出的新循环的有效性。
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来源期刊
CiteScore
2.70
自引率
10.00%
发文量
0
期刊介绍: As the only international journal in the field of air-conditioning and refrigeration in Asia, IJACR reports researches on the equipments for controlling indoor environment and cooling/refrigeration. It includes broad range of applications and underlying theories including fluid dynamics, thermodynamics, heat transfer, and nano/bio-related technologies. In addition, it covers future energy technologies, such as fuel cell, wind turbine, solar cell/heat, geothermal energy and etc.
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