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New design approach and implementation of solar water heaters: A case study in Michigan

机译:太阳能热水器的新设计方法和实施:以密歇根州为例

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The potential of evacuated tube solar water heaters is evaluated for the state of Michigan, which has regions with low solar resources, for year-round usage. Simple empirical equations for the initial sizing design stage are provided for the entire state for a given system. The analysis includes experimental results obtained for a setup at Michigan State University and model-based results for 26 locations dispersed throughout the state. These are obtained using the System Advisor Model (SAM) software package from National Renewable Energy Laboratory. The results show that evacuated tube collector solar water heaters are appropriate for typical household water usage for Michigan's climate with payback periods as low as 8 years (variations are due to local weather conditions). In addition, a study on the optimum collector area for various hot water demands is performed; this led to identification of empirical equations useful for estimating the optimal area of a given system as a function of the hot water demand for locations throughout Michigan. A parametric study is carried out and it is found that the overall heat gain coefficient of an evacuated tube collector affects significantly its performance and it should be considered in order to select an appropriate system. The impact of additional parameters such as heat gain and heat loss coefficients on the performance of the system is also discussed.
机译:对密歇根州的真空管太阳能热水器的潜力进行了评估,该州的太阳能资源较低,可全年使用。对于给定系统的整个状态,提供了初始大小设计阶段的简单经验公式。分析包括在密歇根州立大学的设置获得的实验结果以及遍布全州的26个地点的基于模型的结果。这些是使用国家可再生能源实验室的系统顾问模型(SAM)软件包获得的。结果表明,真空管式集热器太阳能热水器适用于密歇根州气候的典型家庭用水,投资回收期低至8年(因当地天气条件而异)。此外,针对各种热水需求进行了最佳集热器面积的研究。这就导致了经验方程的确定,该方程对于根据整个密歇根州的热水需求来估算给定系统的最佳面积是有用的。进行了参数研究,发现抽真空的集热器的总热增益系数会显着影响其性能,因此应考虑选择合适的系统。还讨论了诸如热增益和热损耗系数之类的其他参数对系统性能的影响。

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