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基于辐射和对流换热新型供暖末端的空气源热泵除霜性能试验研究

Experimental study on defrosting performance of air source heat pump with new type heating terminal based on radiation and convection heat transfer

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【作者】 董建锴闫森顾冬明黄顺

【Author】 Dong Jiankai;Yan Sen;Gu Dongming;Huang Shun;School of Architecture,Harbin Institute of Technology;Heilongjiang Provincial Key Laboratory of Building Energy Efficiency and Utilization;SINOPEC Shanghai Engineering Co.,Ltd.;China Railway Siyuan Survey and Design Group Co.,Ltd.;

【机构】 哈尔滨工业大学建筑学院黑龙江省建筑节能与能源利用重点实验室中石化上海工程有限公司中铁第四勘察设计院集团有限公司

【摘要】 常规空气源热泵在低温环境中运行时普遍存在结霜和除霜现象,由于常规室内盘管储能不足,导致逆循环除霜效果不理想。同时,基于强制对流换热的常规空气源热泵常常会引起室内热分层现象和强烈的吹风感,导致人体热舒适性较差。为解决上述问题,本文结合辐射供暖具有较高热舒适性的优点,提出一种基于辐射和强制对流换热的新型供暖末端,搭建空气源热泵辐射和对流换热性能试验台,对其除霜性能进行试验研究。结果表明:除霜周期内,该系统压缩机功率平均值为429.5 W,除霜能效比为2.88,除霜能效比高于常规空气源热泵系统。

【Abstract】 The frosting and defrosting generally exist for conventional air source heat pumps running in low-temperature environment.Due to the insufficient energy stored in a conventional indoor coil,the defrosting performance of the reverse cycle defrosting is not ideal.Meanwhile,the conventional air source heat pump based on forced convective heat transfer often causes indoor thermal stratification and strong blowing sensation,resulting in poor thermal comfort.In order to solve the problem,considering the advantages of a radiant heating system with higher thermal comfort,a new type of heating terminal is presented based on radiation and forced convection heat transfer.In addition,the experimental platform of the radiation and forced convection heat transfer performance of air source heat pump is set up,and the defrosting performance of system is experimentally analyzed.The results show that during defrosting period,the average power of the compressor is 429.5 W,the defrosting energy efficiency ratio is 2.88,which is higher than that of the conventional air source heat pump system.

  • 【文献出处】 制冷与空调 ,Refrigeration and Air-Conditioning , 编辑部邮箱 ,2018年08期
  • 【分类号】TU832
  • 【被引频次】6
  • 【下载频次】226
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