利用SAM模拟聚光太阳能发电技术的能源、经济和环境性能

Yasser Nassar, Hala ElKhozondar, Mohammed Abouqeelah, Ahmed Abubaker, Abdulhakeem Miskeen, Mohamed M. Khaleel Khaleel, Abdussalam Ahmed, Abdulgader Alsharif, Monaem Elmnifi
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摘要

根据利比亚政府最新发布的战略计划,到2030年,可再生能源和环保能源将提供该国30%的电力。这项研究的目标是揭示可能用于产生清洁和可持续电力的太阳能技术。在利比亚选定的22个地点对五种聚光太阳能(CSP)技术(抛物面槽、太阳能盘、线性菲涅耳反射器、太阳能塔和聚光光伏太阳能电池)进行了能源经济环境研究。选择平准化能源成本(LCOE)作为确定哪种技术最适合每个站点的参考。经济估算包括由化石燃料发电厂排放的二氧化碳气体造成的环境破坏的成本。这项技术允许清洁和可再生能源在全球能源市场上公平竞争,即使在生产石油和补贴电力的国家也是如此。根据数据,利比亚的太阳镜技术在本研究评估的所有技术中具有最低的LCOE。LCOE估算值从每千瓦时0.01美元到0.04美元不等。太阳能塔产生的清洁能源超过100兆瓦,约400.332千瓦时。此外,采用清洁聚光太阳能技术,避免了4235 tCO2/年/MWp的排放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulating the Energy, Economic and Environmental Performance of Concentrating Solar Power Technologies Using SAM
According to the Libyan government's newly released strategic plan, renewable and environmentally friendly energy sources would provide 30% of the country's power by 2030. The goal of this research is to shed light on solar energy technologies that may be used to generate clean and sustainable electricity. An energy-economic-environmental study of five Concentration Solar Power (CSP) technologies (parabolic trough, solar dish, linear Fresnel reflector, solar tower, and concentrated PV solar cell) was conducted for 22 selected locations in Libya. The Levelized Cost Of Energy (LCOE) was chosen as a reference for identifying which technology would be most suited for each site. The economic estimates include the cost of environmental damage caused by carbon dioxide gas (CO2) emissions from fossil-fuel-powered power plants. This technique allows clean and renewable energy to compete fairly in the global energy market, even in countries that produce oil and subsidize electricity. According to the data, the solar mirror technology in Libya has the lowest LCOE of all the technologies evaluated in this study. The LCOE estimates varied from 0.01 to 0.04 dollars per kWh. The clean energy produced by the solar tower surpassed 100 MW, or about 400.332 GWh. Furthermore, the adoption of clean concentrating solar energy technology avoided the discharge of 4,235 tCO2/year/MWp.
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