Energy Consumption Optimization for the Cold Source System of a Hospital in Shanghai - Part II: Operation Control Strategy Using EnergyPlus

Q4 Engineering
Minglu Qu, Xinlin Zhang, Xiang Luo, Xufeng Yan, Zhao Li, Lihui Wang
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Abstract

Energy consumption is a common problem in hospital buildings, which consume twice that of other public buildings. Therefore, it is of great significance to study the control strategy for the efficient operation of the cold source system. The study aimed to explore an efficient operation control strategy for cold source system, and new technologies and patents have emerged for the same. This work, utilizing EnergyPlus, modelled and analyzed the cold source system in a Shanghai hospital to optimize its operation. The accuracy of the simulation was verified by comparing it with experimental data. Based on the simulation results, the factors influencing the energy efficiency of the cold source system were analyzed, and then the operation control strategy of the cold source system was obtained. The XGBoost was used to fit the simulation results, and the operation strategy under full operating conditions was obtained. The simulated results indicated the average energy saving rates during the summer season of the chillers, the chilled water pumps, the cooling water pumps, and the cooling towers to be 6.5%, -4.0%, 38.3%, and 5.4%, respectively, under the optimal operation control strategy. The average system Coefficient of Performance (COP) of the cold source system was 5.9, and the total energy consumption was 957016.3 kW·h, which was 7.1 % energy saving compared to that under the original operation. The conclusions of this study could provide references for the hospital buildings’ cold source system and group control method. This study has important practical significance for the efficient control strategy of cold source systems.
上海某医院冷源系统能耗优化 - 第二部分:使用 EnergyPlus 的运行控制策略
医院建筑的能耗是一个普遍问题,是其他公共建筑的两倍。因此,研究冷源系统高效运行的控制策略具有重要意义。该研究旨在探索冷源系统的高效运行控制策略,目前已出现了相关的新技术和专利。本研究利用 EnergyPlus 对上海某医院的冷源系统进行了建模和分析,以优化其运行,并通过与实验数据的对比验证了仿真的准确性。仿真结果表明,在最优运行控制策略下,冷水机组、冷冻水泵、冷却水泵和冷却塔在夏季的平均节能率分别为 6.5%、-4.0%、38.3% 和 5.4%。冷源系统的平均系统性能系数(COP)为 5.9,总能耗为 957016.3 kW-h,比原运行方式节能 7.1%。该研究对冷源系统的高效控制策略具有重要的现实意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Recent Patents on Mechanical Engineering
Recent Patents on Mechanical Engineering Engineering-Mechanical Engineering
CiteScore
0.80
自引率
0.00%
发文量
48
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