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作 者:何大四[1] 赵忠涛 夏三县 余伟之 篮杰[3] HE Dasi;ZHAO Zhongtao;XIA Sanxian;YU Weizhi;LAN Jie(School of Energy&Environment,Zhongyuan University of Technology,Zhengzhou 450007,China;Technical Management Department,Zhengzhou Rail Transit Co.,Ltd.,Zhengzhou 450001,China;Urban Rail and Underground Engineering Design and Research Institute,China Railway Siyuan Survey and Design Group Co.,Ltd.,Wuhan 460063,China)
机构地区:[1]中原工学院能源与环境学院,河南郑州450007 [2]郑州地铁集团有限公司技术管理部,河南郑州450001 [3]中铁第四勘察设计院集团有限公司城市轨道与地下工程设计研究院,湖北武汉460063
出 处:《中原工学院学报》2022年第4期42-48,79,共8页Journal of Zhongyuan University of Technology
基 金:国家自然科学基金项目(51308560)。
摘 要:地铁车站空调系统运行能耗大,在温差控制等常用控制策略下易出现末端冷量不足的问题。针对该问题,提出了一种基于最小水流量的空调系统控制策略,并以郑州市一地铁车站空调系统为例,利用TRNSYS仿真的方法对该运行策略进行研究。首先搭建该车站建筑围护结构模型;其次搭建工频运行的空调系统模型,作为节能分析的基础模型;最后对基于最小水流量的空调系统的控制策略以及节能效果进行分析。结果表明:基于最小水流量的控制策略相比较工频运行控制策略空调系统节能率为53.1%,室内温度控制精度在±0.5℃范围以内,有效解决了定温差控制策略下末端冷量不足的问题,具有重要的工程应用价值。The operation energy consumption of the air conditioning system in metro station is huge.And common control strategies,such as temperature difference control,usually result in insufficient refrigerating capacity of air conditioning terminals.To cope with his problem,a control strategy of air-conditioning system based on the minimum water flow is presented.A case study of the air-conditioning system of a metro station in Zhengzhou is carried out to study the operation strategy by TRNSYS simulation method.Firstly,the building envelope model of the station is built.And then the model of the air-conditioning system operating at working frequency is built as the basic model for energy-saving analysis.Finally,the control strategy and energy-saving effects of the air-conditioning system based on the minimum water flow are analyzed.The results show that the energy saving rate of the air-conditioning system based on the minimum water flow control strategy is 53.1%and the indoor temperature control accuracy is within the range of±0.5℃.The control strategy based on minimum water flow effectively solves the problem of insufficient refrigerating capacity of air conditioning terminal,which provide suggestions for future engineering application.
分 类 号:TU831.3[建筑科学—供热、供燃气、通风及空调工程]
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