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Urban-scale SALSCS, Part I: Experimental Evaluation and Numerical Modeling of a Demonstration Unit

机译:城市规模的SALSCS,第一部分:示范单位的实验评估和数值建模

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A demonstration unit for the Solar-Assisted Large-Scale Cleaning System (SALSCS), with a solar collector 43 × 60 m~(2) in horizontal dimensions and a tower 60 m in height, was built in Xi’an, China, to study its effectiveness in terms of urban air pollution remediation. To simulate an urban-scale SALSCS with dimensions ranging 10–120 m that was proposed for installation on urban blocks, we first performed experimental measurements on the demonstration unit and used the experimental data to validate a numerical model that we developed. This paper presents the field measurements conducted during three days in Jan. 2017 in Xi’an. The experimental and numerical results of the system flow rate and temperature showed good agreement for six of the eight measurement cases, with average discrepancies of 1.63 m~(3) s~(–1) for the flow rate and 0.78°C for the temperature. Larger discrepancies for the other two cases were observed, and the reasons were analyzed. During the measurements, the filtration efficiency of the filter media installed in the north section of the system with regard to PM_(2.5) was evaluated to be 73.5%. The validated numerical model was applied to study the performance characteristics of the urban-scale SALSCS, and these results will be presented in Part II.
机译:在中国西安建造了一个太阳能辅助大型清洁系统(SALSCS)的示范装置,该装置具有水平尺寸为43×60 m〜(2)的太阳能集热器和高度为60 m的塔。从城市空气污染修复的角度研究其有效性。为了模拟拟在城市街区​​安装的尺寸为10–120 m的城市规模SALSCS,我们首先在演示单元上进行了实验测量,并使用实验数据验证了我们开发的数值模型。本文介绍了2017年1月在西安进行的三天实地测量。系统流量和温度的实验和数值结果在八个测量案例中的六个中显示出良好的一致性,流量的平均差异为1.63 m〜(3)s〜(–1),温度的平均差异为0.78°C 。观察到其他两个案例的差异较大,并分析了原因。在测量期间,相对于PM_(2.5),安装在系统北部的过滤介质的过滤效率评估为73.5%。经过验证的数值模型被用于研究城市规模SALSCS的性能特征,这些结果将在第二部分中介绍。

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