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Parametric and numerical study of a solar system for heating a greenhouse equipped with a buried exchanger

机译:带有埋入式换热器的温室大棚太阳能系统的参数和数值研究

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摘要

This paper presents a TRNSYS simulation to evaluate the performances of a solar water heating system (SWHS) used for greenhouses according to Tunisian weather. The SWHS is mainly composed of two solar collectors, with a 4 m~2 total surface, related to a 200 L storage tank and a capillary polypropylene heat exchanger integrated to the greenhouse. During the simulation all combinations possible of the two solar collectors (series and parallels) are investigated. The parameters which have influence on the storage system, like the inlet flow rate, tank volume and collector area are also investigated. The results of simulation show that, by increasing the tank volume, the temperature at the collector outlet decreases. In addition, high flow rate minimizes the phenomenon of stratification and increases the efficiency of the system. We notice that decreasing the exchanger inlet flow rate is good solution to reduce heating loses. The best storage system we found will be used as our greenhouse heating system. In fact, the chooser) heating system according to this parametric analysis, mainly composed of a flat plate collector and a 200 L tank, can increase the inside air temperature of the greenhouse by 5 ℃ and make it suitable for tomatoes agriculture.
机译:本文提出了TRNSYS仿真,以根据突尼斯的天气情况来评估用于温室的太阳能热水系统(SWHS)的性能。 SWHS主要由两个太阳能集热器组成,总表面积为4 m〜2,涉及一个200 L的储水罐和一个与温室集成的毛细管聚丙烯热交换器。在模拟过程中,研究了两个太阳能收集器(串联和并联)的所有可能组合。还研究了对存储系统有影响的参数,例如入口流量,罐容积和收集器面积。仿真结果表明,通过增加水箱容积,集热器出口的温度降低。此外,高流速最大程度地减少了分层现象,并提高了系统效率。我们注意到降低交换器入口流速是减少热量损失的好方法。我们发现最好的存储系统将用作我们的温室供暖系统。实际上,根据此参数分析的选择器加热系统主要由平板集热器和200 L储罐组成,可使温室的内部空气温度提高5℃,使其适合番茄种植。

著录项

  • 来源
    《Energy Conversion & Management》 |2013年第6期|163-173|共11页
  • 作者单位

    Laboratoire des procidis thermiques, Centre de Recherche et des Technologie de l'Energie, BP 95, Hammam-Lif, Tunis, Tunisia;

    Laboratoire des procidis thermiques, Centre de Recherche et des Technologie de l'Energie, BP 95, Hammam-Lif, Tunis, Tunisia;

    Laboratoire de Photovoltaique, Centre de Recherche et des Technologie de l'Energie, BP 95, Hammam-Lif, Tunis, Tunisia;

    Laboratoire des procidis thermiques, Centre de Recherche et des Technologie de l'Energie, BP 95, Hammam-Lif, Tunis, Tunisia;

    Laboratoire des procidis thermiques, Centre de Recherche et des Technologie de l'Energie, BP 95, Hammam-Lif, Tunis, Tunisia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agricultural greenhouse; Numerical simulation (Transys16); Heating system; Solar energy; Storage tank; Flat plate collector;

    机译:农业温室;数值模拟(Transys16);加热系统;太阳能;储存罐;平板集热器;

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