Experimental investigations of hybrid: geothermal water/solar chimney power plant

被引:26
|
作者
Mokrani, Omar Ben El Khettab [1 ]
Ouahrani, Med Ridha [1 ]
Sellami, Med Hassen [2 ]
Segni, Ladjel [2 ]
机构
[1] Echahid Hamma Lakhar Univ El Oued, Dept Proc Engn & Petrochem, El Oued, Algeria
[2] Kasdi Merbah Univ, Proc Engn Lab PEL, Ouargla, Algeria
关键词
Solar chimney; solar irradiance; power generation; geothermal water; Ouargla; SOLAR CHIMNEY; ENERGY-STORAGE; PERFORMANCE; COLLECTOR; TOWER; PARAMETERS; DESIGN;
D O I
10.1080/15567036.2020.1810830
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
This study aims to contribute to the operation's continuity of solar chimney power plant (SCPP) by integrating geothermal water as an additional heat source. A prototype of (SCPP) with 8 m height and 12 m of collector diameter was built in Ouargla University. A spiral pipe of geothermal water was installed inside the collector. During the experiments, the temperatures' profile were measured through the collector, the temperature of the chimney's entry as well as the air velocity in all cases namely: in the night under geothermal water heating and in daytime under solar irradiance coupled/uncoupled with geothermal water. The experiments carried out in winter 2019 show that the night heating with geothermal water resulted in an increase of the collector center's temperature to 37.1 degrees C and the air velocity to 5.1 m/s in the optimal case when the geothermal water enters at the collector center and exits at its periphery. On the other hand, during daytime, when the heating is by the solar irradiance only, the collector center's temperature reaches 68.3 degrees C and the air velocity reaches 5.8 m/s. Furthermore, coupling the solar irradiance with geothermal water leads to the rise of collector center's temperature to 80 degrees C and the air velocity to 7.1 m/s.
引用
收藏
页码:15474 / 15491
页数:18
相关论文
共 50 条
  • [21] Enhanced power generation through cooling a semi-transparent PV power plant with a solar chimney
    Jamali, Siamak
    Yari, Mortaza
    Mahmoudi, S. M. S.
    ENERGY CONVERSION AND MANAGEMENT, 2018, 175 : 227 - 235
  • [22] Numerical analysis of seawater desalination based on a solar chimney power plant
    Ming, Tingzhen
    Gong, Tingrui
    de Richter, Renaud K.
    Cai, Cunjin
    Sherif, S. A.
    APPLIED ENERGY, 2017, 208 : 1258 - 1273
  • [23] Numerical and Experimental Study of the Aerothermal Characteristics in Solar Chimney Power Plant with Hyperbolic Chimney Shape
    Nasraoui, Haythem
    Driss, Zied
    Ayedi, Ahmad
    Kchaou, Hedi
    ARABIAN JOURNAL FOR SCIENCE AND ENGINEERING, 2019, 44 (09) : 7491 - 7504
  • [24] Effects of collector radius and chimney height on power output of a solar chimney power plant with turbines
    Li, Jing-yin
    Guo, Peng-hua
    Wang, Yuan
    RENEWABLE ENERGY, 2012, 47 : 21 - 28
  • [25] A Novel Design of a Hybrid Solar Double-Chimney Power Plant for Generating Electricity and Distilled Water
    Abdelsalam, Emad
    Almomani, Fares
    Ibrahim, Shadwa
    Kafiah, Feras
    Jamjoum, Mohammad
    Alkasrawi, Malek
    SUSTAINABILITY, 2023, 15 (03)
  • [26] Development of analytical model for solar chimney power plant with and without water storage system
    Choi, Young Jae
    Kam, Dong Hoon
    Park, Yoon Won
    Jeong, Yong Hoon
    ENERGY, 2016, 112 : 200 - 207
  • [27] Experimental investigations on solar chimney for room ventilation
    Mathur, Jyotirmay
    Bansal, N. K.
    Mathur, Sanjay
    Jain, Meenakshi
    Anupma
    SOLAR ENERGY, 2006, 80 (08) : 927 - 935
  • [28] Simulation of a sloped solar chimney power plant in Lanzhou
    Cao, Fei
    Zhao, Liang
    Guo, Liejin
    ENERGY CONVERSION AND MANAGEMENT, 2011, 52 (06) : 2360 - 2366
  • [29] Freshwater generation from a solar chimney power plant
    Ming, Tingzhen
    Gong, Tingrui
    de Richter, Renaud K.
    Liu, Wei
    Koonsrisuk, Atit
    ENERGY CONVERSION AND MANAGEMENT, 2016, 113 : 189 - 200
  • [30] Numerical study on the performance of a solar chimney power plant
    Guo, Penghua
    Li, Jingyin
    Wang, Yunfeng
    Wang, Yuan
    ENERGY CONVERSION AND MANAGEMENT, 2015, 105 : 197 - 205