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Statistical analysis of factors affecting the flow characteristics and thermal efficiency of a building integrated thermal (bit) solar collector

机译:统计分析影响建筑物集成式热(位)太阳能集热器的流动特性和热效率的因素

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摘要

Previous research has identified four factors (array geometry, manifold to riser channel ratio, flow direction in manifold, and the mass flow rate) which will influence the distribution of internal fluid flow within a solar thermal collector. In this study, a two level full factorial (2k) experiment was designed in order to statistically rank their impact and also to identify any significant interactions between these factors. The thermal efficiency of the array, calculated by means of a fluid and heat transfer analysis was taken to be the experiment response. During the heat transfer analysis we approximated the fin efficiency of a BIT collector using the finite difference method which considered the heat losses through the structural ribs of the collector. A statistical analysis of the results revealed that all four main effects had a statistical influence on thermal efficiency of the array at 5 per cent significance level. The main effects ranked from highest to lowest in impact were found to be; geometry, manifold to riser fluid channel diameter, mass flow rate, and the direction of flow in the manifolds. Additionally, two secondary interactions were found to have a statistical influence on the experiment response; the array geometry and the direction of flow in the manifold followed by the array geometry and the ratio of manifold to fluid channel diameter. As the geometry of the BIT collector will vary from customer to customer due to its custom nature, these results indicate that the design of a BIT system should consider the effects of flow distribution. Finally, our numerical analysis of the fin efficiency revealed an approximate 5% drop due to additional heat losses through the structural ribs.
机译:先前的研究已经确定了四个因素(阵列几何形状,歧管与立管通道之比,歧管中的流向以及质量流率),这些因素将影响太阳能集热器内部流体流的分布。在这项研究中,设计了一个两级全因子(2k)实验,以便对它们的影响进行统计学排名,并确定这些因素之间的任何显着相互作用。通过流体和传热分析计算出的阵列的热效率被视为实验响应。在传热分析中,我们使用有限差分法估算了BIT收集器的散热片效率,该方法考虑了通过收集器结构肋的热量损失。对结果的统计分析表明,所有四个主要影响均以5%的显着性水平对阵列的热效率产生了统计影响。发现从影响的最高到最低排序的主要影响是:几何形状,歧管到立管流体通道的直径,质量流率以及歧管中的流向。另外,发现两个次要相互作用对实验的响应有统计学影响。阵列的几何形状和歧管中的流动方向,然后是阵列的几何形状和歧管与流体通道直径的比率。由于BIT收集器的几何结构因其自定义性质而在客户之间会有所不同,因此这些结果表明BIT系统的设计应考虑流量分配的影响。最后,我们对散热片效率的数值分析显示,由于通过结构肋产生的额外热量损失,导致散热片下降了大约5%。

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  • 作者

    Duke Mike; Ghani Faisal Abid;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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