IMECH-IR  > 高温气体动力学国家重点实验室
Three-dimensional numerical study of a kitchen extractor adopting nearby pumping method
Deng J(邓晶); Hong CG; Wang GQ(王贵全); Sheng HZ(盛宏至); Deng J(邓晶)
Source PublicationMATERIAL SCIENCES AND MANUFACTURING TECHNOLOGY
2013
Pages495-500
Conference Name2012 International Conference on Material Sciences and Manufacturing Technology, ICMSMT 2012
Conference DateOCT 05-06, 2012
Conference PlaceDalian, China
AbstractA third generation kitchen extractor adopting nearby pumping method is investigated by using the computational fluid dynamics software. The numerical results are close to the experiment results, which can be used for supporting the optimum design of the equipment. The important parameters such as the particular distributions of velocity, temperature, and species fraction are obtained, which can supply more information about the pumping mechanism of this equipment. It is concluded that the gas-film-jet-cover technology significantly contributed to guaranteeing the pumping effect. Furthermore, decreasing negative pressure of pumping circle and/or the increasing positive pressure of gas-film-inlet could increase the collection efficiency of the equipment. However, it is necessary to choose the most appropriate pressure for getting enough collection efficiency with relatively low energy cost and working noise.
KeywordComputational Fluid Dynamics Computer Simulation Efficiency Kitchens Manufacture Materials Science Pumps Collection Efficiency Computational Fluid Dynamics Software Energy Cost Gas Films Negative Pressures Numerical Results Optimum Designs Particular Distribution Positive Pressure Pumping Effect Pumping Mechanism Pumping Methods Third Generation
DepartmentLHD高效洁净燃烧(CPCR)
ISBN978-3-03785-576-8
URL查看原文
Indexed ByEI
Language英语
Document Type会议论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/46818
Collection高温气体动力学国家重点实验室
Corresponding AuthorDeng J(邓晶)
Recommended Citation
GB/T 7714
Deng J,Hong CG,Wang GQ,et al. Three-dimensional numerical study of a kitchen extractor adopting nearby pumping method[C]MATERIAL SCIENCES AND MANUFACTURING TECHNOLOGY,2013:495-500.
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