首页|期刊导航|制冷|机场航站楼中央空调冷凝水回收系统设计与分析

机场航站楼中央空调冷凝水回收系统设计与分析OA

Design and Analysis of Central Air Conditioning Condensate Water Recovery System for Airport Terminal Buildings

中文摘要英文摘要

为响应国家绿色发展理念,打造绿色低碳航空,建设四型机场.文章旨在探讨并介绍一种大型中央空调冷凝水回收利用的方案设计.以安徽省某枢纽机场为例,针对大型中央空调系统在运行过程中产生的冷凝水,通过自动化控制系统,设计了一套冷凝水回收用于冷却塔补水的装置,实现废水利用,余能回收.文中首先介绍了合肥机场T1航站楼中央空调运行状况,其次,建立计算模型对T1航站楼每日冷凝水可收集量进行预测,并验证了模型的准确性.最后,用该计算模型对正在建设的T2航站楼冷凝水可收集的量值进行效益分析.本研究不仅为中央空调系统的能效优化和水资源回收利用提供了新的方法,也为推动绿色建筑和建设绿色机场提供思路.

In response to the national green development concept and to build a green and low-carbon aviation,as well as to construct a"four-type"airport,this article aims to explore and introduce a scheme design for the recycling and utilization of condensate water from large central air conditioning systems.Taking a certain hub airport in Anhui Province as an example,for the condensate water generated during the operation of the large central air conditioning system,through an automated control system,a device was designed to recover the condensate water for use as water replenishment in cooling towers,achieving wastewater utilization and energy recovery.Firstly,this article introduces the operation status of the central air conditioning system in the T1 terminal building of Hefei Airport.Secondly,a calculation model is established to predict the daily amount of condensate water that can be collected in the T1 terminal building,and the accuracy of the model is verified.Finally,using this calculation model,the amount of condensate water that can be collected in the T2 terminal building under construction is analyzed for its economic benefits.This research not only provides a new method for the energy efficiency optimization and water resource recycling of central air conditioning systems,but also offers ideas for promoting green buildings and constructing green airports.

顾利;魏亚飞

合肥新桥国际机场有限公司,安徽 合肥,231201安徽民航机场集团有限公司,安徽 合肥,231201

建筑与水利

绿色机场冷凝水回收中央空调冷却塔补水节能减排

Green AirportCondensate Water RecoveryCentral Air ConditioningCooling Tower Water ReplenishmentEnergy Conservation and Emission Reduction

《制冷》 2026 (2)

1-6,6

10.3969/J.ISSN.1005-9180.2026.02.0001

评论