首页> 外文会议>ES2011;International conference on energy sustainability >USING A WINDBREAK TO IMPROVE THE THERMAL PERFORMANCE OF A FLAT PLATE SOLAR COLLECTOR: A FEASIBILITY STUDY
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USING A WINDBREAK TO IMPROVE THE THERMAL PERFORMANCE OF A FLAT PLATE SOLAR COLLECTOR: A FEASIBILITY STUDY

机译:使用挡风玻璃来改善平板太阳能集热器的热性能:可行性研究

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During the past few decades, a wide range of studies have been performed to improve the performance of flat plate solar collectors by either reducing the heat loss from a collector or by increasing the amount of solar radiation absorbed by the absorber plate. Examples of these studies include adding transparent honeycomb to fill the air gap between the glazing and absorber plate to reduce convective heat loss, replacing the air in the gap by other gases such as Argon, Krypton, Xenon and Carbon Dioxide, or adding a chemical coating such as Copper Oxide to increase absorbtance and reduce the emittance of the absorber plate. While these methods improve the collector's efficiency, they focus primarily on limiting the natural convection that occurs in the collector cavity, or on improving the optical properties of the absorber or glazing. None of these studies have addressed the problem of heat loss due to forced convection to the surrounding ambient air in any detail. Yet, research has shown that forced convection will contribute significantly to the heat loss from a collector. Windbreaks have traditionally been used to direct wind to protect farmland, and to direct wind drifts and sand dunes. Windbreaks also have been shown to provide protection for homes from winter winds which result in reduced heating costs for buildings. While windbreaks have been traditionally used for large scale applications, there is reason to believe that similar benefits can be expected for scaled down applications such as adding a windbreak along side of a flat-plate solar collector. In this paper, we examine the feasibility of using a windbreak to provide a flat plate solar collector protection from the wind in order to improve its performance. A series of experiments were performed wherein the thermal performance of two flat-plate collectors - one without a windbreaker and one with a windbreaker - were measured. The results of these experiments are reported in this paper and the need for further studies to explore different windbreak configurations is discussed.
机译:在过去的几十年中,已经进行了广泛的研究以通过减少集热器的热损失或通过增加吸收板吸收的太阳辐射量来改善平板太阳能收集器的性能。这些研究的示例包括添加透明蜂窝以填充窗玻璃和吸收板之间的空气间隙,以减少对流热损失,用其他气体(例如氩气,K气,氙气和二氧化碳)替代间隙中的空气,或添加化学涂层例如氧化铜,以增加吸收率并降低吸收板的发射率。虽然这些方法提高了收集器的效率,但它们主要集中在限制收集器腔体中发生的自然对流,或改善吸收器或玻璃的光学特性。这些研究都没有任何细节解决由于强制对流到周围环境空气而造成的热量损失的问题。然而,研究表明,强制对流会大大影响集热器的热损失。传统上,防风林一直被用来引导风以保护农田,并引导风漂和沙丘。防风林还被证明可以保护房屋免受冬季风的侵害,从而降低建筑物的采暖成本。传统上将防风衣用于大规模应用,但我们有理由相信,按比例缩小的应用有望获得类似的好处,例如在平板太阳能集热器的侧面增加防风衣。在本文中,我们研究了使用防风罩为平板太阳能集热器提供防风保护以提高其性能的可行性。进行了一系列实验,其中测量了两个平板集热器的热性能-一个不带风衣,一个带风衣。这些实验的结果在本文中进行了报道,并讨论了进一步研究以探索不同防风林结构的必要性。

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