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Experimental and numerical analysis of the influence of inlet configuration on the performance of a roof top solar chimney

机译:入口结构对屋顶太阳能烟囱性能影响的实验和数值分析

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The Roof Top Solar Chimney system is a natural solar updraft technique utilizing the solar energy to generate wind stream within the system passage that has enough driving force to create stack effect. The influence of the inlet shape of the solar air collector on the solar chimney performance was investigated experimentally and numerically in the present paper. Four different inlet configurations have been modeled and ANSYS FLUENT software was used to simulate and visualize the 2-D aero-thermal flow field surrounding the inlet region. Experimental measurements of the four different inlets were conducted using a roof top solar chimney set up to validate the simulation results and to evaluate and compare the system performance at each inlet configuration. The experimental model has two identical transparent covers installed over the roof of a room model, opened at the top to allow air flow from both sides to a chimney pipe. It was found that when the inlet has vertical cross section, it offered the best performance as the velocity and mass flow rate of the air at the chimney was observed to be higher compared with the other three inlet configurations. When the inlet cross section was employed as horizontal, the performance of the collector was reduced by 84% compared to the vertical inlet setting, at 1.00pm. The CFD analysis demonstrated, interestingly, that most of the air flow in the collector was directed from upper region above the inlet, while small amount is flowing from the bottom side of the inlet. This justify the reason of very low performance of air solar collector with horizontal orientation. The results revealed the possibility of reducing the area of the transparent canopy of the solar chimney power plant and convert the outer region to open top absorber. (C) 2017 Elsevier B.V. All rights reserved.
机译:屋顶太阳能烟囱系统是一种自然的太阳能上升技术,利用太阳能在系统通道内产生风流,该风流具有足够的驱动力以产生烟囱效应。本文通过实验和数值研究了太阳能集热器的进气口形状对太阳能烟囱性能的影响。已对四种不同的进气口配置进行了建模,并使用ANSYS FLUENT软件模拟和可视化了进气口周围的二维空气热流场。使用屋顶太阳能烟囱进行了四个不同入口的实验测量,以验证模拟结果并评估和比较每种入口配置下的系统性能。实验模型在房间模型的屋顶上安装了两个相同的透明盖,顶部朝上打开以允许空气从两侧流向烟囱管。结果发现,当进气口具有垂直横截面时,它提供了最佳性能,因为观察到的烟囱处空气的速度和质量流率比其他三种进气口配置更高。当将入口横截面用作水平横截面时,在1.00pm处,与垂直入口设置相比,收集器的性能降低了84%。有趣的是,CFD分析表明,收集器中的大部分气流是从入口上方的上部区域引出的,而少量空气则从入口的底侧流动。这证明了水平定向的空气太阳能收集器的性能非常低的原因。结果表明,有可能减小太阳能烟囱发电厂的透明顶篷面积,并将外部区域转换为敞开式吸收塔。 (C)2017 Elsevier B.V.保留所有权利。

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