朱娜

Associate professor    Supervisor of Doctorate Candidates    Supervisor of Master's Candidates

  • Professional Title:Associate professor
  • Gender:Female
  • Status:Employed
  • Department:School of Environmental Science and Engineering
  • Education Level:Postgraduate (Doctoral)
  • Degree:Doctoral Degree in Engineering
  • Alma Mater:The Hong Kong Polytechnic University

Paper Publications

Modeling and simulation on the performance of a novel double shape-stabilized phase change materials wallboard.

Release time:2023-04-22Hits:
  • Indexed by:
    Article
  • First Author:
    Na Zhu
  • Co-author:
    Pingfang Hu,Yu Lei,Zhangning Jiang,Fei Lei
  • Journal:
    Applied Thermal Engineering
  • Included Journals:
    SCI
  • Affiliation of Author(s):
    Huazhong University of Science and Technology
  • Place of Publication:
    United Kingdom
  • Discipline:
    Engineering
  • First-Level Discipline:
    Civil Engineering
  • Funded by:
    National Natural Science Foundation of China (NSFC)
  • Document Type:
    J
  • Volume:
    87
  • Page Number:
    615-623
  • ISSN No.:
    1359-4311
  • Key Words:
    Ground source heat pump; Phase change material; Optimal control; Cooling storage ratio
  • DOI number:
    10.1016/j.applthermaleng.2015.05.056
  • Date of Publication:
    2015-08-05
  • Impact Factor:
    6.465
  • Abstract:
    Ground source heat pump (GSHP) integrated with phase change material (PCM) cooling storage system could shift peak load and save electricity charge. This paper studied the optimal control method of GSHP system integrated with PCM cooling storage tank in an office building in Wuhan, China. The energy performance and economic analysis of this combined system under different cooling storage ratios (the ratio of PCM cooling storage tank capacity to total system cooling capacity) were analyzed. The optimal operation mode and optimal cooling storage ratio were obtained for this combined system. Considering initial investment and operation cost, the optimal cooling storage ratio was 40% by numerical study. The annual cost of the GSHP combined PCM cooling storage system under cooling storage ratio of 40% was reduced by 34.2% compared with common GSHP hybrid cooling tower (CT) system.