Yearly performance of low-enthalpy parabolic trough collectors in MENA region according to different sun-tracking strategies

被引:20
|
作者
Allouhi, A. [1 ]
Amine, M. Benzakour [2 ]
Kousksou, T. [3 ]
Jamil, A. [1 ]
Lahrech, K. [4 ]
机构
[1] USMBA, Ecole Super Technol Fes, Route Imouzzer,BP 2427, Fes, Morocco
[2] USMBA, Fac Sci & Tech Fes, Route Imouzzer,BP 2202, Fes, Morocco
[3] Univ Pau & Pays Adour, IFR, Lab Sci Ingn Appl Mecan & Genie Elect SIAME, A Jules Ferry, F-64000 Pau, France
[4] USMBA, Ecole Natl Sci Appl Fes, Route Bensouda,BP 72, Fes, Morocco
关键词
PTC; MENA region; Sun-tracking; Climate; Simulation; NUMERICAL-SIMULATION; ENERGY-CONSUMPTION; STEAM-GENERATION; CO2; EMISSIONS; SOLAR-ENERGY; ELECTRICITY; SYSTEMS; TECHNOLOGIES; PLANTS; HEAT;
D O I
10.1016/j.applthermaleng.2017.09.099
中图分类号
O414.1 [热力学];
学科分类号
摘要
Solar parabolic trough collector (FTC) is a very popular system in solar concentration technology, which is widely used for electric production and heat generation in industrial processes. In this paper, a validated mathematical model has been proposed to evaluate the performance of low-enthalpy PTC in five sites of the MENA region: Ouarzazate (Morocco), Gafsa (Tunisia), Jeddah (Saudi Arabia), Amman (Jordan) and Aswane (Egypt). A MATLAB program was developed to simulate the hourly thermal performance of the PTC under fluctuating climatic conditions. A particular attention has been given to the effect of the sun-tracking technique on the collector's performance. The model validation was carried out in two phases: first, by comparison with the results generated by the System Advisor Model software, and second by comparison with experimental data. In both cases, a very close agreement is obtained. The results have shown clearly that the tracking technique, climate and season of the year have a significant impact on the PTC performance. The best site for implementing such technologies was found to be Ouarzazate (Morocco) with a useful annual energy generation potential varying from 104.85 to 154.57 MWh. On December 24, the PTC operating in Ouarzazate using 0.2 kg/s mass flow rate, the outlet water temperature can achieve a maximum temperature of 70 degrees C using the full-tracking and N-S tracking techniques, while the outlet temperature does not exceed 46.5 degrees C using the E-W tracking. This temperature can reach 82 degrees C on July 07, by using the full-tracking and E-W tracking modes. From a general aspect, it was also concluded that the optimal cost-effective tracking strategy for the annual heat generation is the E-W polar tracking one independently of the geographical location. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1404 / 1419
页数:16
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