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Optimization of operational parameters of a liquid desiccant system integrated with a heat recovery unit

  • Ying Jhe Chou
  • , Bin Zhou
  • , Shih Cheng Hu
  • , Angus Shiue
  • , Ti Lin
  • , Archy Wang
  • , Ching Lun Hsiao
  • , Graham Leggett

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

The liquid desiccant system can make a contribution to a sustainable path for maintaining healthy and comfortable indoor environments. The liquid desiccant system has two major subsystems, dehumidification and regeneration. Cold energy recovery was achieved by passing the indoor exhaust air through an air hose to import and dehumidify the inlet air prior to the precooling stage/phase. Heat energy recovery was effected by a heat exchanger. The system simply recycles the heat energy without any moisture transfer in the air, preheating the inlet air to the regeneration subsystem. Furthermore, based on the dehumidification capacity, regeneration capacity and the personal comfort criteria, the optimal match of air volume was selected. The results show the condition with the dehumidification airflow of 2600 CMH and the return air ratio in the range from 75% to 80% range was suitable for personal comfort. In this case, the matching regeneration airflow was 1600 CMH without heat recovery, so that the air flow rates for dehumidification and regeneration are optimal.

Original languageEnglish
Article number100826
JournalThermal Science and Engineering Progress
Volume22
DOIs
StatePublished - 1 May 2021

Bibliographical note

Publisher Copyright:
© 2020 Elsevier Ltd

Keywords

  • Heat recovery
  • Liquid desiccant
  • Lithium bromide

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