Education, Science, Technology, Innovation and Life
Open Access
Sign In

Study on complementary power generation mode of solar thermal and coal-fired power stations under the background of new energy

Download as PDF

DOI: 10.23977/jeeem.2023.060307 | Downloads: 8 | Views: 393

Author(s)

Yanting Shi 1

Affiliation(s)

1 China Energy Longyuan Environmental Protection Co., Ltd., Beijing, China

Corresponding Author

Yanting Shi

ABSTRACT

Under the background of new energy, the complementarity of solar energy and coal-fired power plants can increase power output without increasing the thermal load of boilers and systems, which can significantly improve the operation economy of coal-fired power plants. Based on the established complementary power generation analysis model of solar thermal power station and coal-fired power station, the operation modes of light field and energy storage part of demonstration power station with energy storage system are studied under typical meteorological conditions and load conditions. For 100%THA condition, the heat consumption rate of steam turbine generator set decreased by 4.71%.

KEYWORDS

Complementary power generation, Solar thermal, Coal-fired power

CITE THIS PAPER

Yanting Shi, Study on complementary power generation mode of solar thermal and coal-fired power stations under the background of new energy. Journal of Electrotechnology, Electrical Engineering and Management (2023) Vol. 6: 45-50. DOI: http://dx.doi.org/10.23977/jeeem.2023.060307.

REFERENCES

[1] Wang D, Peng D, Huang D, et al. Research on short-term and mid-long term optimal dispatch of multi-energy complementary power generation system [J]. IET renewable power generation, 2022(7): 16.
[2] Suo X, Zhao S, Ma Y, et al. New Energy Wide Area Complementary Planning Method for Multi-Energy Power System [J]. IEEE Access, 2021, (99): 1-1.
[3] Nakarmi B, Chen H, Zhou P, et al. Reconfigurable Identical and Complementary Chirp Dual-LFM Signal Generation Subjected to Dual-Beam Injection in a DFB Laser [J]. Journal of Lightwave Technology, 2020, (99): 1-1.
[4] Mareda T, Gaudard L, Romerio F. A Parametric Genetic Algorithm Approach to Assess Complementary Options of Large Scale Wind-solar Coupling [J]. IEEE/CAA Journal of Automatica Sinica, 2017, 4(02): 260-272.
[5] Torabi A, Barton J, Willman C, et al. Development of Solid Oxide Fuel Cells at Versa Power Systems & FuelCell Energy [J]. Ecs Transactions, 2016, 72(7): 3-9.
[6] Cirocco, LR, Belusko, et al. Controlling stored energy in a concentrating solar thermal power plant to maximise revenue [J]. Iet Renew Power Gen, 2015, 2015, 9(4): 379-388.
[7] Mao J, Yang Y, Hou H, et al. Techno-economic analysis of solar thermal aided coal-fired power plants [J]. Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2015, 35(6): 1406-1412.
[8] Cheng X, Pu B, Xin T, et al. A novel solar energy integrated low-rank coal fired power generation using coal pre-drying and an absorption heat pump – Science Direct [J]. Applied Energy, 2017, 200(15): 170-179.
[9] Zhu Y, Zhai R, Qi J, et al. Annual performance of solar tower aided coal-fired power generation system [J]. Energy, 2017, 119(15): 662-674.
[10] Sharma, Parvareh, Abbas. Highly integrated post-combustion carbon capture process in a coal-fired power plant with solar repowering [J]. INT J ENERG RES, 2015, 2015, 39(12): 1623-1635.
[11] Li C, Yang Z, Zhai R, et al. Off-design thermodynamic performances of a solar tower aided coal-fired power plant for different solar multiples with thermal energy storage [J]. Energy, 2018, 163(15): 956-968.
[12] Zhong W, Chen X, Zhou Y, et al. Optimization of a solar aided coal-fired combined heat and power plant based on changeable integrate mode under different solar irradiance [J]. Solar Energy, 2017, 150(7): 437-446.

Downloads: 2089
Visits: 98278

Sponsors, Associates, and Links


All published work is licensed under a Creative Commons Attribution 4.0 International License.

Copyright © 2016 - 2031 Clausius Scientific Press Inc. All Rights Reserved.