Thermal design guidelines of solar power towers

被引:164
作者
Rodriguez-Sanchez, M. R. [1 ]
Soria-Verdugo, Antonio [1 ]
Antonio Almendros-Ibanez, Jose [2 ,3 ]
Acosta-Iborra, Antonio [1 ]
Santana, Domingo [1 ]
机构
[1] Univ Carlos III Madrid, Dept Thermal & Fluid Engn, Madrid 28911, Spain
[2] Univ Castilla La Mancha, Escuela Ingn Ind Albacete, Dept Appl Mech & Projects Engn, Albacete 02071, Spain
[3] Renewable Energy Res Inst, Sect Solar & Energy Efficiency, Albacete 02071, Spain
关键词
Solar power tower; Molten-salt central-receiver; Film temperature; Radiation effective temperature; Tube corrosion; Thermal stress; RECEIVER; SIMULATION; TUBE;
D O I
10.1016/j.applthermaleng.2013.11.014
中图分类号
O414.1 [热力学];
学科分类号
摘要
One of the main problems of solar power tower plants with molten salt as heat transfer fluid is the reliability of central receivers. The receiver must withstand high working temperatures, molten salt corrosion and important solar flux transients that lead to thermal stresses and fatigue. Despite these difficulties, it is necessary an estimation of the receiver thermal efficiency in order to have an accurate estimation of the investment cost of the solar plant and to assure the lifetime estimation of the receiver. A thermal, mechanical and hydrodynamic analysis of these receivers has been developing in this work, assuming constant heat flux in each axial discretized section of the tube wall but considering circumferential temperature variations in the perimeter of the tubes caused by the difference between the heat flux received by the front part of the tubes and by the rear part. The thermal analysis shows that the radiation losses are higher than in literature, and consequently the thermal efficiency is lower too. This is due to the fact that the effective tube wall temperature for radiation is higher than the mean tube wall temperature, especially if the rear temperature of the tubes is considered. Besides, it has been found that the highest temperatures and thermal stresses are sited on the eastern and western panels of the receivers. Film temperature is the most limiting parameter for the receiver design due to it is responsible for salt decomposition and tube corrosion. Therefore, once the tube material is chosen, the film temperature cannot exceed a critical value over which the corrosion ratio raises rapidly. Small tube diameters and low number of panels results in low film temperatures, although this kind of design increases the pressure drop. Therefore, a compromise between film temperature and pressure drop can lead to a receiver design that ensures its lifetime, and at the same time, optimizes the investment and operational cost of the receiver. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:428 / 438
页数:11
相关论文
共 50 条
  • [11] Integration of parabolic trough and linear Fresnel collectors for optimum design of concentrating solar thermal power plant
    Desai, Nishith B.
    Bandyopadhyay, Santanu
    CLEAN TECHNOLOGIES AND ENVIRONMENTAL POLICY, 2015, 17 (07) : 1945 - 1961
  • [12] Natural frequencies and mode shapes of towers for solar updraft power plants
    Goldack, Arndt
    PROCEEDINGS OF THE 8TH INTERNATIONAL CONFERENCE ON STRUCTURAL DYNAMICS, EURODYN 2011, 2011, : 3575 - 3581
  • [13] Design and thermal performance analysis of concentrating solar power tower for water heating systems
    Qenawy, Mohamed
    El-Mesery, Hany S.
    Wang, Junfeng
    Abdelhady, Salama
    CASE STUDIES IN THERMAL ENGINEERING, 2023, 48
  • [14] Conceptual design of a new thermal-electric conversion device in lightweight concentrating solar thermal power system
    Rui, Xi
    Zheng, Fei
    Zheng, Tao
    Ji, Xiang
    Wu, Tian
    ENERGY SCIENCE & ENGINEERING, 2020, 8 (01) : 181 - 202
  • [15] 10 MW SDU SOLAR POWER TOWER PLANT DESIGN
    Senol, Ramazan
    Ucgul, Ibrahim
    Koyun, Arif
    Acar, Mustafa
    JOURNAL OF THE FACULTY OF ENGINEERING AND ARCHITECTURE OF GAZI UNIVERSITY, 2011, 26 (04): : 813 - 821
  • [16] Software Development for Design, Simulation and Sizing of Parabolic Trough Solar Thermal Power Plant (EthioSolA)
    Nega, Derese T.
    Tibba, Getachew S.
    Ramayya, A. Venkata
    Mariam, Berhanu G. H.
    PROCEEDINGS OF THE 2015 12TH IEEE AFRICON INTERNATIONAL CONFERENCE - GREEN INNOVATION FOR AFRICAN RENAISSANCE (AFRICON), 2015,
  • [17] Optimisation and optimal geometry design for thermal energy storages in high temperature concentrating solar power
    Berrhazi, Samir
    Ahmed, Ouammi
    Benchrifa, Rachid
    IET RENEWABLE POWER GENERATION, 2018, 12 (01) : 125 - 130
  • [18] Optimal design with materials selection for thermal energy storages in high temperature concentrating solar power
    Berrhazi, Samir
    Ahmed, Ouammi
    Benchrifa, Rachid
    Zejli, Driss
    IET RENEWABLE POWER GENERATION, 2018, 12 (01) : 37 - 44
  • [19] Thermal design of solar thermoelectric generator with phase change material for timely and efficient power generation
    Jo, Hyeonmin
    Joo, Younghwan
    Kim, Duckjong
    ENERGY, 2023, 263
  • [20] PV-Enhanced Solar Thermal Power
    Platzer, Werner
    2013 ISES SOLAR WORLD CONGRESS, 2014, 57 : 477 - 486