首页 | 本学科首页   官方微博 | 高级检索  
     

一种新的全空气THIC空调系统性能分析
引用本文:刘雄,李林蔚,祝铭,王彦杰,钱亚中,叶志成. 一种新的全空气THIC空调系统性能分析[J]. 建筑热能通风空调, 2020, 39(6): 53-56,105
作者姓名:刘雄  李林蔚  祝铭  王彦杰  钱亚中  叶志成
作者单位:西安建筑科技大学建筑设备科学与工程学院;西安建筑科技大学建筑设备科学与工程学院;西安建筑科技大学建筑设备科学与工程学院;西安建筑科技大学建筑设备科学与工程学院;西安建筑科技大学建筑设备科学与工程学院;西安建筑科技大学建筑设备科学与工程学院
摘    要:提出了一种新的全空气THIC空调系统,并对其夏季工况进行了研究,给出了新系统能达到的最小热湿比和新风比范围。计算分析了显热或全热回收器迎风面积变化时,对低温表冷器制冷量,以及其单位制冷量除湿量的影响。发现全热回收器才是系统中的关键部件,增加全热回收器的迎风面积可以大幅度减少低温表冷器的制冷量,并在一定迎风面积范围内,快速提升低温表冷器单位制冷量的除湿量。而显热回收器迎风面积变化时的影响很小。

关 键 词:全空气  温湿度  空调  新风比  性能

Performance Analysis of a New All-Air Temperature and Humidity Independent Processed Air Conditioning System
LIU Xiong,LI lin-wei,ZHU Ming,WANG Yan-jie,QIAN Ya-zhong,YE Zhi-cheng. Performance Analysis of a New All-Air Temperature and Humidity Independent Processed Air Conditioning System[J]. Building Energy & Environment, 2020, 39(6): 53-56,105
Authors:LIU Xiong  LI lin-wei  ZHU Ming  WANG Yan-jie  QIAN Ya-zhong  YE Zhi-cheng
Affiliation:(School of Building Services Science and Engineering,Xi’an University of Architecture and Technology)
Abstract:A new all-air THIC system is proposed,and its working conditions in summer are studied.The minimum heat-humidity ratio and fresh air ratio range that the new system can achieve are given.The influence of the change of sensible heat or total heat exchanger windward area on the refrigeration capacity of cryogenic surface cooler and its dehumidification capacity per unit refrigeration capacity is calculated and analyzed.It is found that total heat exchanger is the key component of the system.The upwind area of the total heat exchanger can greatly reduce the refrigeration capacity of the cryogenic surface cooler,and rapidly increase the dehumidification capacity of the unit refrigeration capacity of the cryogenic surface cooler within a certain upwind area,while the influence of the upwind area of the sensible heat exchanger is very small.
Keywords:all-air  temperature and humidity  air conditioner  fresh air ratio  performance
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号