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Experimental study on an indoor scale solar chimney setup in an artificial environment simulation laboratory

机译:人工环境模拟实验室中的室内规模太阳烟囱设置的实验研究

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An artificial environment simulation laboratory (AESL) was built and successfully applied to the experimental study of a solar chimney setup for the first time. A solar simulator and a temperature control system are included in the laboratory to achieve active control of environmental parameters. An indoor scale solar chimney setup with a collector diameter of 1.22 m and chimney height of 1 m was constructed in the testing area of the AESL. The airflow temperature and updraft velocity were measured for the solar chimney setup with varying radiation intensities and chimney heights. The measured data were used to validate a thermal model for the collector. The thermal characteristics of the solar collector were investigated through the temperature field in the collector. The upper limitations on the collector radius and chimney height were discussed based on experimental results. The experimental work on the basic solar chimney setup performance helped in understanding the thermodynamic characteristics of the solar chimney power plant (SCPP), thereby serving as the basis for the design of large-scale commercial SCPPs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建立了一个人工环境模拟实验室(AESL),并将其成功地首次应用于太阳能烟囱装置的实验研究。实验室中包括太阳能模拟器和温度控制系统,以实现对环境参数的主动控制。在AESL的测试区域中建造了一个室内规模的太阳能烟囱,其集热器直径为1.22 m,烟囱高度为1 m。测量了具有变化的辐射强度和烟囱高度的太阳烟囱设置的气流温度和上升气流速度。测量数据用于验证收集器的热模型。通过收集器中的温度场研究了太阳能收集器的热特性。根据实验结果讨论了收集器半径和烟囱高度的上限。关于基本的太阳能烟囱设置性能的实验工作有助于理解太阳能烟囱发电厂(SCPP)的热力学特性,从而成为设计大型商用SCPP的基础。 (C)2016 Elsevier Ltd.保留所有权利。

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