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枢纽机场航站楼的战略区域供冷系统运行,一项聚焦于新冠疫情影响的研究。

Strategical district cooling system operation in hub airport terminals, a research focusing on COVID-19 pandemic impact.

作者信息

Yan Biao, Yang Wansheng, He Fuquan, Huang Kehua, Zeng Wenhao, Zhang Wenlong, Ye Haiseng

机构信息

School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou, Guangdong, 510006, China.

出版信息

Energy (Oxf). 2022 Sep 15;255:124478. doi: 10.1016/j.energy.2022.124478. Epub 2022 Jun 7.

Abstract

Part load ratio is often observed in real operations of airport terminal cooling system. This phenomenon is more obvious during the COVID-19 pandemic, as sudden flight restrictions impacting cooling demand are widely adopted in hub airport terminals. This research aims to propose optimal strategies of multi-chiller in airport terminals based on cooling load characteristics modeling, to tackle the aforementioned issues. Numerical experiments based on a real-world Chinese airport terminal are conducted to validate the proposed method. The results show that an average cooling load drop of 30% is observed from scenario of normal flight before COVID-19 to scenario of COVID-19 Period flight, and the average cooling load drop reaches to 44% from scenario of busy flight before COVID-19 to scenario of COVID-19 Period flight. The results also reflect that cooling load presents synchronous trend with passenger flow, but presents asynchronous trend with outdoor temperature. The influence of outdoor temperature on cooling demand delays due to building envelops. It indicates that simple superimposition according to passenger flow change for chiller operation number is reliable, efficient and effective, but is not suitable for outdoor temperature change. The findings are helpful to develop optimal strategies for further real-time control of multi-chiller.

摘要

在机场航站楼制冷系统的实际运行中,经常会观察到部分负荷率的情况。这种现象在新冠疫情期间更为明显,因为枢纽机场航站楼广泛采用了突然的航班限制措施,这影响了制冷需求。本研究旨在基于冷负荷特性建模,提出机场航站楼多台冷水机组的优化策略,以解决上述问题。基于中国一个实际机场航站楼进行了数值实验,以验证所提出的方法。结果表明,从新冠疫情前正常航班场景到新冠疫情期间航班场景,平均冷负荷下降了30%,从新冠疫情前繁忙航班场景到新冠疫情期间航班场景,平均冷负荷下降达到了44%。结果还表明,冷负荷与客流量呈现同步趋势,但与室外温度呈现异步趋势。由于建筑围护结构,室外温度对制冷需求的影响存在延迟。这表明根据客流量变化对冷水机组运行数量进行简单叠加是可靠、高效且有效的,但不适用于室外温度变化。这些发现有助于为多台冷水机组的进一步实时控制制定优化策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f77b/9172207/31fe288ea0bb/gr1_lrg.jpg

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