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Efficiency evaluation of a solar water heating system applied to the greenhouse climate

机译:应用于温室气候的太阳能热水系统的效率评估

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Tunisia has a sunny climate; therefore, the use of solar energy to heat greenhouses can be a solution to reduce the heating cost. A thermal model has been developed to investigate the potential of using a solar water system for greenhouse heating. This system is mainly based on capillary heat exchangers integrated in the greenhouse and ensuring the ground heat storing. A numerical study is conducted using Trnsys16 in order to estimate the exchanger length and the water flow rate allowing the best performance of the system. The inputs of Trnsys16 software were evaluated by experimental tests. The cost and the efficiency of the system were estimated for different greenhouses size. It was concluded that the heating cost of a 1000 m(3) greenhouse was reduced by 51.8% in April and the system can alone satisfy the heating needs for a 10 m3 greenhouse. The good efficiency of the studied system was validated by an experimental study. The simulated and experimental results were compared and error did not exceed 6% which makes Trnsys16 simulation program an efficient tool to reproduce the real behavior of the ground solar water heating system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:突尼斯气候晴朗。因此,利用太阳能为温室供暖可以作为降低供暖成本的一种解决方案。已经开发出一种热模型来研究使用太阳能水系统进行温室供暖的潜力。该系统主要基于集成在温室中的毛细管热交换器,并确保地面热量存储。使用Trnsys16进行了数值研究,以估计交换器长度和水流量,从而使系统达到最佳性能。通过实验测试评估了Trnsys16软件的输入。估算了不同温室大小的系统成本和效率。得出的结论是,4月份1000 m(3)温室的采暖成本降低了51.8%,该系统可以单独满足10 m3温室的采暖需求。实验研究证明了所研究系统的良好效率。比较了仿真结果和实验结果,误差不超过6%,这使Trnsys16仿真程序成为再现地面太阳能热水系统真实行为的有效工具。 (C)2015 Elsevier Ltd.保留所有权利。

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