期刊名称:International Journal of Sustainable Engineering
印刷版ISSN:1939-7038
出版年度:2020
卷号:13
期号:5
页码:387-397
DOI:10.1080/19397038.2020.1740820
语种:English
出版社:Taylor & Francis Group
摘要:ABSTRACTEarth pipe cooling (EPC) is a type of passive cooling system that takes advantage of the nearly constant underground temperature of the Earth to cool the atmospheric air in a confined space. The efficiency of this system depends on several factors, including the size and position of the inlet pipe, the velocity of the incoming air, shape of the cooling spaces and inlet surface pattern. However, ensuring uniform dispersion of the incoming cooled air can also improve the thermal comfort and efficiency of the EPC system, which has been overlooked in most of the existing studies. This paper, in this regard, presents a relevant parametric study to highlight that the efficiency of the EPC can be improved significantly by dispersing the oming flow through the proper utilisation of turbulators near the inlet. Thermal models are developed in ANSYS Fluent to perform this simulation-based study. It is found that the application of turbulators can help to reduce the domain temperature by around 0.8°C, thus saving an additional 0.84kWhof energy per day for the particular cooling space considered in this study.