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Experimental and numerical investigations of a solar space heating system based on design of experiments method

机译:基于实验方法设计的太阳能空间加热系统的实验性和数值研究

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In this paper, a solar water heating system (SWHS) based on 4 m(2) flat plate collectors is integrated to an office building to ensure the heat demand. The SWHS is equipped with Labview software and a multichannel digital card that makes the system control and data acquisition automatic. A TRNSYS model is developed and validated against experimental data and then used for optimization purposes. A sensitivity approach based on the Design of Experiments method and dynamic simulations is proposed to optimize the solar fraction. For this purpose, 134 simulations have been carried out. Metamodels of the solar fraction have been then established for three ranges of the collector area; namely, [2-10] m(2); [10-20] m(2) and [20-30] m(2). The results have shown that the solar fraction is highly dependent on the collectors' area and the storage volume. Furthermore, the impact of the pump control strategy on the solar fraction has increased with larger systems. Finally, optimum design parameters have been obtained using the fitted models to achieve the targeted solar fraction of 60%. The proposed approach could be used for the optimization of solar heating systems design.
机译:本文基于4米(2)平板收集器的太阳能水加热系统(SWHS)集成到办公大楼,以确保热需求。 SWHS配备LabVIEW软件和多通道数字卡,使系统控制和数据采集自动。针对实验数据开发并验证了Trnsys模型,然后用于优化目的。提出了一种基于实验方法和动态模拟设计的灵敏度方法来优化太阳能分数。为此目的,已经进行了134个模拟。然后已经建立了太阳能分数的金属晶片,为收集器区域的三个范围建立;即[2-10] m(2); [10-20] M(2)和[20-30] m(2)。结果表明,太阳能分数高度依赖于收集器区域和存储体积。此外,随着较大的系统,泵控制策略对太阳能分数的影响增加。最后,使用拟合型号获得了最佳设计参数,以实现60%的目标太阳能分数。该方法可用于优化太阳能加热系统设计。

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