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Experimental Investigation of the Performance of a Building Integrated Thermal Solar Collector for Domestic Water Heating

机译:建筑物集成式家用太阳能集热器性能的实验研究

摘要

The recent increased interest in renewable energy has created a need for research in the area of solar technology, particularly solar water heating collectors and systems. In this study a new design of a building integrated thermal (BIT) collector was developed and experimentally tested. The subsequent result of this was the viability of its use in a water heating system for domestic application in a country like New Zealand, can be investigated.Experimental results showed that the unglazed and glazed collector can achieve thermal efficiencies of 39% and 75%, respectively. A comparison of the glazed BIT with an integrated collector of a similar design showed that the maximum thermal efficiency of 75% was relatively high; however, the downside to this is that high losses also occurred. A theoretical viewpoint of the collector showed that the improvement in efficiency was attributed to the high fin efficiency which resulted from using a high thermal conductivity material relative to the integrated collector previously studied. Moreover, the high heat loss from the collector was shown to be a result of the lack of side insulation and the presence of air gaps between the collector and the rear insulation, contributing to the overall heat loss from the collector and system.A control strategy was also developed for the control of the system and simulated tests showed that the controller was indeed effective in controlling the system. However, it was highlighted that an improvement is needed for the method of simulating the load required by the household. Additionally, transient simulation of the developed system showed that accurate predictions of the systems performance can be made. Moreover, using a hypothetical scenario where the heat loss from the BIT collector-system is reduced, it was shown that a significant improvement in its performance for water heating can be made.This work has shown that the use of integrated collectors for domestic household heating in New Zealand is indeed viable. The potential for the control of these systems to achieve high efficiencies is also recommended, by using advance control strategies.
机译:最近对可再生能源的兴趣增加,因此需要研究太阳能技术,特别是太阳能热水收集器和系统。在这项研究中,开发并通过实验测试了建筑物集成热(BIT)收集器的新设计。随后的结果是,可以研究将其用于新西兰这样的国家/地区的家用热水系统中的可行性。实验结果表明,未上釉和上釉的集热器可达到39%和75%的热效率,分别。釉面BIT与类似设计的集成集热器的比较表明,最大热效率为75%,相对较高。但是,这样做的缺点是也发生了高额损失。集热器的理论观点表明,效率的提高归因于翅片效率高,这是由于相对于先前研究的集成集热器使用了高导热率的材料所致。此外,显示出集热器的高热量损失是由于缺少侧面隔热层以及集热器和后部隔热层之间存在气隙导致的,这是造成集热器和系统整体热量损失的原因。还开发了用于控制系统的软件,模拟测试表明该控制器确实在控制系统方面有效。但是,要强调的是,需要对模拟家庭所需负荷的方法进行改进。此外,对已开发系统的瞬态仿真表明,可以对系统性能进行准确的预测。此外,使用减少BIT收集器系统的热量损失的假设情景,表明可以显着改善其用于热水的性能。这项工作表明,将集成式收集器用于家庭生活供暖在新西兰确实可行。还建议通过使用高级控制策略来控制这些系统以实现高效率。

著录项

  • 作者

    Rohorua William Touanga;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 en
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