引用本文:[点击复制]
[点击复制]
【打印本页】 【在线阅读全文】【下载PDF全文】 查看/发表评论下载PDF阅读器关闭

←前一篇|后一篇→

过刊浏览    高级检索

本文已被:浏览 15248次   下载 11428 本文二维码信息
码上扫一扫!
复叠式空气源热泵蓄能除霜与常规除霜特性实验研究
曲明璐,李天瑞,樊亚男,王坛
0
(上海理工大学环境与建筑学院)
摘要:
针对复叠式空气源热泵在冬季寒冷地区供热运行中遇到的结霜和除霜问题,本文提出增设蓄热器的蓄能复叠式空气源热泵除霜系统,通过实验研究了该系统间断制热蓄能除霜及不间断制热蓄能除霜两种除霜模式下的除霜特性,并与常规复叠式空气源热泵采用的低温级热气旁通除霜方式进行对比分析。结果表明:采用蓄能除霜方法的除霜时间较旁通除霜减少71.4%~77.6%,系统除霜能耗降低65.1%~85.2%,机组除霜运行更稳定、可靠。
关键词:  空气源热泵  复叠式循环  除霜  蓄热器
DOI:
    
基金项目:国家自然科学基金青年基金(51406119)资助项目。
Experimental Study on Characteristics of Energy Storage Defrosting and Conventional Defrosting for Cascade Air Source Heat Pump
Qu Minglu,Li Tianrui,Fan Yanan,Wang Tan
(School of Environment & Architecture, University of Shanghai for Science and Technology)
Abstract:
Based on the frosting and defrosting problems of cascade air source heat pumps (CASHPs) during heating operation in the cold area in winter, a novel thermal energy storage CASHP defrosting system with a thermal accumulator is proposed. The defrosting performances of thermal energy storage defrosting mode with intermittent heating and continuous heating were experimentally studied, and then the experimental results were compared with common used hot-gas bypass defrosting mode. It was found that in energy storage defrosting mode, the defrosting duration time and the energy consumption were reduced by 71.4%~77.6% and 65.1%~85.2% respectively compared with hot-gas bypass defrosting mode, and the system defrosting operation was more stable and reliable.
Key words:  air source heat pump  cascade cycle  defrosting  thermal accumulator

用微信扫一扫

用微信扫一扫