Investigation of solar parabolic trough power plants with and without integrated TES (thermal energy storage) and FBS (fuel backup system) using thermic oil and solar salt

被引:70
|
作者
Boukelia, T. E. [1 ]
Mecibah, M. S. [1 ]
Kumar, B. N. [2 ]
Reddy, K. S. [2 ]
机构
[1] Univ Constantine 1, Fac Technol Sci, Dept Mech Engn, Lab Mech, Constantine 25000, Algeria
[2] Indian Inst Technol Madras, Dept Mech Engn, Heat Transfer & Thermal Power Lab, Madras 600036, Tamil Nadu, India
关键词
Solar energy; Parabolic trough power plant; Thermal energy storage; Fuel backup system; Energy-exergy-environmental-economic analyses; DIRECT STEAM-GENERATION; EXERGETIC ANALYSIS; PERFORMANCE-MODEL; COLLECTOR; DESIGN;
D O I
10.1016/j.energy.2015.05.038
中图分类号
O414.1 [热力学];
学科分类号
摘要
Thermodynamic, economic and environmental analyses of concentrating solar power plants assist in identifying an effective and viable configuration. In this paper, a 4E (energy-exergy-environmental-economic) comparative study of 8 different configurations of parabolic trough solar thermal power plants with two different working fluids (Therminol VP-1 -oil and molten solar salt), with and without integrated thermal energy storage or/and backup fuel system is presented. The results of the comparative study indicate relevant differences among the 8 configurations. The molten solar salt configuration with integrated thermal energy storage and fossil fuel backup system exhibits the highest overall energy efficiency (18.48%) compared to other configurations. Whereas, the highest overall exergy efficiency (21.77%), capacity factor (38.20%) and annual energy generation (114 GWh) are found for the oil based configuration with integrated thermal energy storage and fossil fuel backup system. The results indicate that the configurations based on molten salt are better in terms of environmental and economical parameters. The configurations with integrated thermal energy storage and fossil fuel backup system are found to be techno-economical, but on the other hand are less environment friendly. A detailed comparison of these plants after optimization must be performed before drawing a final conclusion about the best configuration to be adopted in parabolic trough solar thermal power plant. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:292 / 303
页数:12
相关论文
共 50 条
  • [1] Design, optimization and feasibility study of parabolic trough solar thermal power plant with integrated thermal energy storage and backup system for Algerian conditions
    Boukelia, T. E.
    Mecibah, M. S.
    Meriche, I. E.
    [J]. 3RD INTERNATIONAL SYMPOSIUM ON ENVIRONMENTAL FRIENDLY ENERGIES AND APPLICATIONS (EFEA 2014), 2014,
  • [2] Optimal Design of a Molten Salt Thermal Storage Tank for Parabolic Trough Solar Power Plants
    Gabbrielli, R.
    Zamparelli, C.
    [J]. JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2009, 131 (04): : 0410011 - 04100110
  • [3] PCM BASED THERMAL ENERGY STORAGE SYSTEM INTEGRATED WITH SOLAR PARABOLIC TROUGH COLLECTOR
    Raja, S.
    Prakash, S.
    Gokulnath, R.
    Krishnamoorthy, A.
    Lillymercy, J.
    [J]. JOURNAL OF ENGINEERING SCIENCE AND TECHNOLOGY, 2018, 13 : 40 - 51
  • [4] MOLTEN NITRATE SALT DEVELOPMENT FOR THERMAL ENERGY STORAGE IN PARABOLIC TROUGH SOLAR POWER SYSTEMS
    Bradshaw, Robert W.
    Cordaro, Joseph G.
    Siegel, Nathan P.
    [J]. ES2009: PROCEEDINGS OF THE ASME 3RD INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY, VOL 2, 2009, : 615 - 624
  • [5] MOLTEN NITRATE SALT DEVELOPMENT FOR THERMAL ENERGY STORAGE IN PARABOLIC TROUGH SOLAR POWER SYSTEMS
    Bradshaw, Robert W.
    Siegel, Nathan P.
    [J]. ES2008: PROCEEDINGS OF THE 2ND INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY, VOL 2, 2009, : 631 - 637
  • [6] Performance enhancement of parabolic trough collector solar thermal power plants with thermal energy storage capability
    Praveen, R. P.
    Mouli, Kotturu V. V. Chandra
    [J]. AIN SHAMS ENGINEERING JOURNAL, 2022, 13 (05)
  • [7] Experimental and numerical investigation on solar parabolic trough collector integrated with thermal energy storage unit
    Sivaram, P. M.
    Nallusamy, N.
    Suresh, M.
    [J]. INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2016, 40 (11) : 1564 - 1575
  • [8] Two-tank molten salt storage for parabolic trough solar power plants
    Herrmann, U
    Kelly, B
    Price, H
    [J]. ENERGY, 2004, 29 (5-6) : 883 - 893
  • [9] Comparison of Parabolic Trough Concentrated Solar Power and Photovoltaic Plants with and without Energy Storage using NSGA-II
    Magno, Cedie Mar A.
    Manzano, John Paul P.
    Aguirre, Rodolfo A., Jr.
    [J]. PROCEEDINGS 2024 IEEE 6TH GLOBAL POWER, ENERGY AND COMMUNICATION CONFERENCE, IEEE GPECOM 2024, 2024, : 328 - 333
  • [10] PERFORMANCE SIMULATION OF PARABOLIC TROUGH SOLAR COLLECTOR USING TWO FLUIDS (THERMIC OIL AND MOLTEN SALT)
    Boukelia, T. E.
    Mecibah, M. S.
    Laouafi, A.
    [J]. JOURNAL OF FUNDAMENTAL AND APPLIED SCIENCES, 2016, 8 (02) : 600 - 626