Details of Research Outputs

TitleParametric study of a novel gravity assisted loop heat pipe (galhp) with composite mesh-screen wick structure
Creator
Date Issued2016
Conference Name12th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics
Source PublicationProceedings--12th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics
Pages533-538
Conference Date11 to 13 July 2016
Conference PlaceMalaga, Spain
PublisherAmerican Society of Thermal and Fluids Engineers
Abstract

This article carried out a parametric study of the thermal performance of a novel gravity assisted loop heat pipe (GALHP) with composite mesh-screen wick structure. A refined threeway structure with interior liquid-vapour separator was developed on top of the evaporator to enable a gravity-assisted operation, which not only simplified the corresponding wick structure but also eliminated the ‘dry-out’ potential in conventional GALHPs. A dedicated simulation model was developed on basis of the heat transfer and the flow characteristics derived from the governing equations of mass, energy, and momentum. This model has been validated by authors’ experiment work with the ability to predict the GALHP thermal performance at a reasonable accuracy. It was found that the GALHP thermal performance, represented by the reciprocal of overall thermal resistance, varies directly with applied heat load, evaporator diameter, vapour-liquid separator diameter, and mass flow rate of cooling fluid in the jacket, but inversely with condensation temperature. The research results will be useful for further design, optimisation, and application of such GALHP in the gravity-assisted circumstance.

Language英语English
Document TypeConference paper
Identifierhttp://repository.uic.edu.cn/handle/39GCC9TT/12010
CollectionResearch outside affiliated institution
Corresponding AuthorZhang, Xingxing; Tang, Llewellyn
Affiliation
1.Department of Architecture and Built Environment, University of Nottingham Ningbo China
2.School of Environment and Energy Engineering, Beijing University of Civil Engineering and Architecture, China
3.Department of Architecture and Built Environment, University of Nottingham, UK
Recommended Citation
GB/T 7714
Zhang, Xingxing,Xu, Peng,Shen, Jingchunet al. Parametric study of a novel gravity assisted loop heat pipe (galhp) with composite mesh-screen wick structure[C]: American Society of Thermal and Fluids Engineers, 2016: 533-538.
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