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Design of a Concentrated Solar Power Hybrid System for Electricity Production for a Textile Manufacturing Plant

机译:纺织制造厂发电用集中式太阳能混合动力系统的设计

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The aim of this paper is to design a system to provide as substitute for grid-power derived from fossil fuel, a reliable and clean source of energy for a textile plant in Mauritius. This is done by designing a small-scale Concentrated Solar Power (CSP) hybrid system capable of generating electricity for the facility. The technical and financial feasibility of the system operating with an Organic Rankine Cycle (ORC) and a combined cycle gas turbine (CCGT) as hybrid system is proposed in this work. The power plant is designed and modelled in the process simulation solver, System Advisor Model. The size of the solar field is optimized for the maximum annual solar to electric conversion efficiency using the concept of solar multiple. The electrical consumption of the facility is analysed in order to meet the power demand. The annual electricity generation of the design system, at a rated capacity of 2 MWe, is determined at a selected location from specific hourly data of direct normal irradiation and indirect active thermal energy storage system, and an optimum hybridization fraction. The simulated annual performance of the design system is compared to the current energy consumption of the facility. The results demonstrate that the power plant has a significant potential during the summer season, but manifests some limiting factors in the winter season. Moreover, a financial appraisal, which includes the total investment cost of the project and its payback period, is presented along with an assessment of the greenhouse gas emission.
机译:本文的目的是设计一种系统,以替代由化石燃料获得的电网电力,化石燃料是毛里求斯一家纺织厂的可靠,清洁的能源。这是通过设计一种能够为设施发电的小型集中式太阳能(CSP)混合系统来完成的。在这项工作中,提出了使用有机朗肯循环(ORC)和联合循环燃气轮机(CCGT)作为混合系统的系统的技术和财务可行性。在过程仿真求解器System Advisor Model中对发电厂进行设计和建模。使用太阳能倍数的概念,针对最大的年度太阳能到电转换效率,对太阳能场的大小进行了优化。为了满足电力需求,对设施的电力消耗进行了分析。设计系统的年发电量,额定容量为2 MW e 根据直接法线照射和间接主动热能存储系统的特定小时数据以及最佳杂交分数,在选定的位置确定。将设计系统的模拟年度性能与设施的当前能耗进行比较。结果表明,该发电厂在夏季具有巨大的潜力,但在冬季表现出一些限制因素。此外,还进行了财务评估,包括项目的总投资成本及其投资回收期,以及对温室气体排放的评估。

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