印度乌代普尔100mw LFR太阳能热电厂的建模与性能仿真

Deepak Bishoyi , K. Sudhakar
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引用次数: 115

摘要

太阳能是地球上最丰富的能源,被认为是化石燃料的重要替代品。太阳能可以通过两种不同的过程转化为电能:光伏转换和热力学循环。与光热技术相比,光伏电站的寿命和效率较低。CSP技术被认为是太阳能利用领域最有前途的替代技术之一。利用NREL SAM对100 MW线性菲涅耳反射式太阳能热电厂设计进行了热性能评估,该电厂具有6小时的热能储存。为了假设CSP电厂的技术可行性,选择了拉贾斯坦邦一个年DNI为2248.17 kWh/m2/年的地点。该电站设计由16个太阳能收集模块组成一个回路。由于其优异的热力学性能,HITEC太阳能盐被选为HTF。设计的电厂年发电量263,973,360千瓦时,电厂效率为18.3%。建议的轻堆电厂的产能利用率为30.2%。LFR太阳能热电厂的性能结果鼓励了印度CSP电厂的进一步创新和发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling and performance simulation of 100 MW LFR based solar thermal power plant in Udaipur India

Solar energy is the most abundant source of energy on the earth and considered as an important alternative to fossil fuels. Solar energy can be converted into electric energy by using two different processes: photovoltaic conversion and the thermodynamic cycles. Lifetime and efficiency of PV power plant is lesser as compared to the CSP technology. CSP technology is viewed as one of the most promising alternative technology in the field of solar energy utilization. A 100 MW Linear Fresnel Reflector solar thermal power plant design with 6 hours of thermal energy storage has been evaluated for thermal performance using NREL SAM. A location receiving an annual DNI of 2248.17 kWh/m2/year in Rajasthan is chosen for the technical feasibility of hypothetical CSP plant. The plant design consists of 16 numbers of solar collector modules in a loop. HITEC solar salt is chosen as an HTF due to its excellent thermodynamic properties. The designed plant can generate annual electricity of 263,973,360 kWh with the plant efficiency of 18.3 %. The capacity utilization of the proposed LFR plant is found to be 30.2%. The LFR solar thermal power plant performance results encourage further innovation and development of CSP plants in India.

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