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The influence of chiimney structural parameters on the solar chimneys integrated with seawater desalination

机译:ChiiMney结构参数对海水淡化的太阳能烟囱的影响

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Comparison experimental devices with the different chimney structural parameters for the solar chimney power generation system integrated with seawater desalination have been set up. The performances of these integrated devices have been tested and researched comparatively under the actual weather condition. Results show the seawater regeneration body in the system has certain load range to the flow rate of airflow. It is beneficial to strengthen the seawater evaporation, enhance the freshwater output that the diameter of the chimney is enlarged and the height is enhanced in this range. To the electricity power generation of the system, whether to increase the chimney diameter, or increase the chimney height, the volume of the chimney will be increased when other parameters are fixed, namely the flow rate of airflow will be increased, and the power generation will be significantly increased, thus the solar energy utilization efficiency will significantly improve. In the actual project, it is very important that the optimal combination of different height and diameter of the chimney can be selected according to the actual situation for development of large-scale integrated system.
机译:已经建立了与海水淡化的太阳烟囱发电系统不同烟囱结构参数的比较实验装置。这些集成装置的性能已经在实际的天气条件下进行了测试和研究。结果显示系统中的海水再生体具有一定的负载范围与气流的流速。加强海水蒸发是有益的,增强淡水输出,即烟囱的直径扩大,在该范围内增强了高度。对于系统的电力发电,是否增加烟囱直径,或增加烟囱高度,当其他参数固定时,烟囱的体积将增加,即气流的流速将增加,并且发电将显着增加,因此太阳能利用效率将显着改善。在实际项目中,可以根据大规模集成系统的发展的实际情况选择烟囱不同高度和直径的最佳组合非常重要。

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