Thermal desalination potential with parabolic trough collectors and geothermal energy in the Spanish southeast

被引:31
|
作者
Colmenar-Santos, Antonio [1 ]
Palomo-Torrejon, Elisabet [1 ]
Mur-Perez, Francisco [1 ]
Rosales-Asensio, Enrique [2 ]
机构
[1] UNED, Dept Ingn Elect Elect Control Telemat & Quim Apli, Juan del Rosal 12,Ciudad Univ, Madrid 28040, Spain
[2] Univ Leon, Dept Ingn Elect & Sistemas & Automat, Escuela Ingn Ind & Informat, Campus Vegazan S-N, E-24071 Leon, Spain
关键词
Thermal desalination potential; Parabolic trough collectors; Geothermal energy; DIRECT STEAM-GENERATION; WATER DESALINATION; THERMOECONOMIC ANALYSIS; RENEWABLE ENERGY; POWER-PLANTS; SOLAR; DISTILLATION; SYSTEM; TECHNOLOGY; SIMULATION;
D O I
10.1016/j.apenergy.2019.114433
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Desalination industry has become essential for the survival of the population in places with shortages of fresh water. Because is a costly process, the constant search for the best local renewable energy sources is a necessity. A theoretical Multi-effect distillation plant of 9000 m(3)/d located in the southeast Spanish (Almeria) is intended to fed thermally with solar (parabolic trough collectors) and geothermal energy. Starting from the history of solar irradiation and temperatures of the province of Almeria from 1994 to 2016 provided by Solargis database, a discrimination of the profile of temperatures is obtained at the exit of the solar panels. Putting in common the profile exit temperatures and the potentiality of the geothermal resource at the depth in the area under study, a series of possible configurations are obtained. The theoretical results of the study indicate that during 76% of the annual time is achieved with both resources (solar and geothermal) at that depth of the well in that specific climatological zone (490 m, t= 41.8 degrees C). Since the thermal gradient in the area is 8.87 degrees C per 100 m depth according to the studies carried out, only geothermal energy would be necessary at deep of 790 m to obtain working temperatures of the desalination plant at 70 degrees C. Applying the results to the existing desalination plants of the Spanish project named Actions for the Management and Utilization of Water is obtained 6 years of amortization and 510,387,920 kg/y CO2 avoided to the atmosphere for all of these plants.
引用
收藏
页数:21
相关论文
共 50 条
  • [1] Use of parabolic trough solar energy collectors for sea-water desalination
    Kalogirou, S
    [J]. APPLIED ENERGY, 1998, 60 (02) : 65 - 88
  • [2] Modelling of Greenhouse using Parabolic Trough Collectors Thermal Energy
    Grigoriu, Ramona-Oana
    Voda, Alina
    Arghira, Nicoleta
    Iliescu, Sergiu Stelian
    [J]. IFAC PAPERSONLINE, 2015, 48 (30): : 450 - 455
  • [3] Thermal performance of parabolic trough solar collectors
    Conrado, L. Salgado
    Rodriguez-Pulido, A.
    Calderon, G.
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2017, 67 : 1345 - 1359
  • [4] Energy and exergy analysis of parabolic trough collectors
    Sadaghiyani, Omid K.
    Boubakran, Mohsen S.
    Hassanzadeh, Amir
    [J]. INTERNATIONAL JOURNAL OF HEAT AND TECHNOLOGY, 2018, 36 (01) : 147 - 158
  • [5] Assessment of the thermal enhancement methods in parabolic trough collectors
    Bellos E.
    Tzivanidis C.
    [J]. International Journal of Energy and Environmental Engineering, 2018, 9 (1) : 59 - 70
  • [6] Thermal efficiency enhancement of parabolic trough collectors: a review
    Chekifi, Tawfiq
    Boukraa, Moustafa
    [J]. JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2022, 147 (20) : 10923 - 10942
  • [7] Thermal efficiency enhancement of parabolic trough collectors: a review
    Tawfiq Chekifi
    Moustafa Boukraa
    [J]. Journal of Thermal Analysis and Calorimetry, 2022, 147 : 10923 - 10942
  • [8] Design analysis of solar parabolic trough thermal collectors
    Hafez, A. Z.
    Attia, A. M.
    Eltwab, H. S.
    ElKousy, A. O.
    Afifi, A. A.
    AbdElhamid, A. G.
    AbdElqader, A. N.
    Fateen, S-E. K.
    El-Metwally, K. A.
    Soliman, A.
    Ismail, I. M.
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2018, 82 : 1215 - 1260
  • [9] Modeling, transient simulations and parametric studies of parabolic trough collectors with thermal energy storage
    Akba, Tufan
    Baker, Derek
    Yazicioglu, Almila Guvenc
    [J]. SOLAR ENERGY, 2020, 199 (199) : 497 - 509
  • [10] The integration of parabolic trough solar collectors and evacuated tube collectors to geothermal resource for electricity and hydrogen production
    Atiz, Ayhan
    Karakilcik, Hatice
    Erden, Mustafa
    Karakilcik, Mehmet
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46 (57) : 29027 - 29037