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塔式太阳能光热电站经济效益分析 被引量:2

The Economic Benefit Analysis of Solar Tower Power Station
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摘要 塔式太阳能光热发电技术因其聚光效果好、太阳能转化率高、发电效率提升空间大,广泛应用于发电容量较大的电站。二次反射光热发电是一种基于塔式光热技术的新兴技术,与传统的塔式光热发电相比具有经济效益好、安全性高、施工周期短、运维便利等优势,是极具发展潜力的光热发电技术。 Solar Tower power generation technology is widely used in large generating capacity power stations because of its good concentrating effect,high solar energy conversion rate and large room for power generation efficiency improvement.Beam-down solar tower power generation is an emerging technology based on concentrating solar tower technology.Compared with the traditional tower power generation,it has the advantages of good economic benefit,high safety,short construction period,convenient operation and maintenance,etc.It is a solar tower power generation technology with great development potential.
作者 李冉 Li Ran(East China Electric Power Design Institute Co.,Ltd.)
出处 《上海节能》 2020年第1期74-77,共4页 Shanghai Energy Saving
关键词 塔式太阳能光热 二次反射 经济效益 Concentrating Solar Tower Beam-Down Solar Tower Economic Benefit
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  • 1YANG Yongping,GUO Xiyan,WANG Ningling.Power generation from pulverized coal in China[J].Energy,2010,35(11):4336-4348.
  • 2MILLS D.Advances in solar thermal electricity technology[J].Solar Energy,2004,76(1):19-31.
  • 3WANG Zhifeng.Prospectives for China's solar thermal power technology development[J].Energy,2010,35(11):4417-4420.
  • 4PENG Shuo,HONG Hui,WANG Yanjuan,et al.Offdesign thermodynamic performances on typical days of a330 MW solar aided coal-fired power plant in China[J].Applied Energy,2014,130:500-509.
  • 5HOU Hongjuan,YU Zhenyue,YANG Yongping.Performance evaluation of solar aided feedwater heating of coal-fired power generation(SAFHCPG)system under different operating conditions[J].Applied Energy,2013,112:710-718.
  • 6SURESH M V J J,REDDY K S,Ajit Kumar Kolar.4-E(energy,exergy,environment and economic)analysis of solar thermal aided coal-fired power plant[J].Energy for Sustainable Development,2014,14(4):267-279.
  • 7NATHAN G J,BATTYE D L,ASHMAN P J.Economic evaluation of a novel fuel-saver hybrid combining a solar receiver with a combustor for a solar power tower[J].Applied Energy,2014,113:1235-1243.
  • 8BAGHERNEJAD A,YAGHOUBI M.Exergoeconomic analysis and optimization of an Integrated Solar Combined Cycle System(ISCCS)using genetic algorithm[J].Energy Conversion and Management,2011,52(5):2193–2203.
  • 9LIDIA MARTN,MARIANO Martín.Optimal yearround operation of a concentrated solar energy plant in the south of Europe[J].Applied Thermal Engineering,2013,59(1):627-633.
  • 10RICARDO Vasquez Padilla,ARMANDO Fontalvo,GOKMEN Demirkaya,et al.Exergy analysis of parabolic trough solar receiver[J].Applied Thermal Engineering,2014,67(1):579-586.

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