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Application of conjugate heat transfer in multidisciplinary design optimization of internal-cooled turbine blade

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科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

The genetic algorithm was employed to Multidisciplinary Design Optimization of transonic internally cooled turbine blades based on the conjugate heat transfer (CHT) method. Firstly, a parametric modeling method was employed to model the internal-cooled blade.Comparison of the SST turbulence model with and withoutγ-θtransition model was conducted, and the influence and reason between turbulent region and heat transfer distribution was analyzed.The result shows that separation appeared after middle region of the suction surface, because of the pressure after shock wave decrease abruptly that reduce adverse pressure gradient resistance capacity of laminar flow, it leads to instability and transition, and then enter a state of turbulence, same to the heat transfer coefficient with the phenomenon of abrupt increase that impact the temperature distribution, consequently SST model with γ-θ transition is better to showcase the change of aerodynamic and heat transfer in the transition region; Then,comparing the cooling effectiveness with different number cooling holes of internal-cooled blade, four cooling channels case was the best choice in consideration of the cooling effectiveness and the manufacturing process and the cost of the blade; In the end, Automatic optimization process was set up,andseveral optimization frameworks were achieved. With the cooling flow increase in 0.011849 kg/s, average temperature and maximum temperature were reduced by 4.92% and 1.55% respectively in the boundary conditionsoptimization, in addition to optimized the cooling flow and the cooling effectiveness, temperature distribution in the part of contrastive analysis of turbulence model was verifiable, Simultaneously it is important guiding significance for the geometry parameters optimization.

源语言英语
主期刊名Applied Materials and Technologies for Modern Manufacturing
出版商Trans Tech Publications Ltd
1693-1699
页数7
ISBN(印刷版)9783037858882
DOI
出版状态已出版 - 2013
已对外发布
活动3rd International Conference on Applied Mechanics, Materials and Manufacturing, ICAMMM 2013 - Dalian, 中国
期限: 24 8月 201325 8月 2013

出版系列

姓名Applied Mechanics and Materials
423-426
ISSN(印刷版)1660-9336
ISSN(电子版)1662-7482

会议

会议3rd International Conference on Applied Mechanics, Materials and Manufacturing, ICAMMM 2013
国家/地区中国
Dalian
时期24/08/1325/08/13

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