Modeling and Performance Simulation of 100 MW PTC Based Solar Thermal Power Plant in Udaipur India

Solar energy is a key renewable energy source and the most abundant energy source on the globe. Solar energy can be converted into electric energy by using two different processes: by means of photovoltaic (PV) conversion and the thermodynamic cycles. Concentrated solar power (CSP) is viewed as one...

全面介绍

Saved in:
书目详细资料
Main Authors: Bishoyia, Deepak, Sudhakar, K.
格式: Article
出版: Elsevier Ltd. 2017
主题:
在线阅读:https://doi.org/10.1016/j.csite.2017.05.005
https://doi.org/10.1016/j.csite.2017.05.005
http://umpir.ump.edu.my/18426/1/Modeling%20and%20performance%20simulation%20of%20100%20MW%20PTC%20based%20solar%20thermal%20power%20plant.pdf
http://umpir.ump.edu.my/18426/6/Modeling%20and%20performance%20simulation%20of%20100%20MW%20PTC%20based%20solar%20thermal%20power%20plant%201.pdf
标签: 添加标签
没有标签, 成为第一个标记此记录!
实物特征
总结:Solar energy is a key renewable energy source and the most abundant energy source on the globe. Solar energy can be converted into electric energy by using two different processes: by means of photovoltaic (PV) conversion and the thermodynamic cycles. Concentrated solar power (CSP) is viewed as one of the most promising alternatives in the field of solar energy utilization. Lifetime and efficiency of PV system are very less compared to the CSP technology. A 100 MW parabolic trough solar thermal power plant with 6 h of thermal energy storage has been evaluated in terms of design and thermal performance, based on the System Advisor Model (SAM). A location re-ceiving an annual DNI of 2248.17 kW h/m2 in Rajasthan is chosen for the technical feasibility of hypothetical CSP plant. The plant design consists of 194 solar collector loops with each loop comprising of 8 parabolic trough collectors. HITEC solar salt is chosen as an HTF due to its excellent thermodynamic properties. The designed plant can generate annual electricity of 285,288,352 kW h with the plant efficiency of 21%. The proposed design of PTC based solar thermal power plant and its performance analysis encourages further innovation and development of solar thermal power plants in India.