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CFD study of compost waste heat for use in a hybrid solar tower

机译:混合太阳能塔使用堆肥废热的CFD研究

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The goal of this research is to use Computational Fluid Dynamics (CFD) to numerically investigate the heat transfer associated with the waste heat released from using compost to assist the flow in a solar chimney. The novelty of the current research is the hybrid aspect of using a solar chimney in conjunction with compost waste heat to enhance the performance of the solar chimney. Additionally, the hybrid device will use photovoltaics stored on the roof of the solar chimney to generate electricity. Many CFD studies are available in the literature regarding the optimization of the solar chimney, which indicate that the power generation of the chimney is directly proportional to the height of the chimney, as well as the diameter of the base of the chimney. The new contribution of our present research will be in using CFD to quantify and match empirical data for the release of heat from a composting pile, which is the key piece of technology in converting the composting waste heat into usable renewable energy. Preliminary feasibility studies have been performed by the authors indicate the hybrid solar chimney concept to be viable, i.e. a 300 m tall tower will generate approximately 40 kW, which is in qualitative and quantitative agreement with other archived published studies.
机译:该研究的目标是使用计算流体动力学(CFD)来数值研究与使用堆肥释放的废热相关的传热,以帮助在太阳能烟囱中流动。目前研究的新颖性是使用太阳烟囱与堆肥废热一起使用太阳烟囱的混合方面,以提高太阳烟囱的性能。另外,混合动力装置将使用储存在太阳烟囱顶部的光伏,以产生电力。关于太阳烟囱的优化的文献中有许多CFD研究,这表明烟囱的发电与烟囱的高度成正比,以及烟囱基部的直径。我们现在研究的新贡献将是使用CFD量化和热量从一个堆肥堆,这是技术在堆肥余热转换成可用可再生能源的关键部分释放匹配的经验数据。已进行初步的可行性研究由作者指示混合太阳能烟囱概念是可行的,即,300米高的塔将产生大约40千瓦,这是与其它归档发表的研究定性和定量协议。

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