Computational study of film-cooled turbine blade with slot-injection and shower-head design

碩士 === 國防大學中正理工學院 === 兵器系統工程研究所 === 89 === The present study is aimed to study the film-cooling effectiveness problem by employing the computational fluid dynamic(CFD)technique. The computational simulation has been performed using four kind of commercial software packages, the grid gener...

Full description

Bibliographic Details
Main Authors: Kuo jia-wen, 郭家
Other Authors: Jr-Ming Miao
Format: Others
Language:zh-TW
Published: 2001
Online Access:http://ndltd.ncl.edu.tw/handle/26482131093745047386
id ndltd-TW-089CCIT0157029
record_format oai_dc
spelling ndltd-TW-089CCIT01570292016-01-29T04:19:40Z http://ndltd.ncl.edu.tw/handle/26482131093745047386 Computational study of film-cooled turbine blade with slot-injection and shower-head design 高壓渦輪葉片薄膜冷卻設計之數值模擬分析與研究 Kuo jia-wen 郭家 碩士 國防大學中正理工學院 兵器系統工程研究所 89 The present study is aimed to study the film-cooling effectiveness problem by employing the computational fluid dynamic(CFD)technique. The computational simulation has been performed using four kind of commercial software packages, the grid generator, ICEM/CFD, the solver, CFX4.3, and the flowfield visualible /analysis tools, TECPLOT and FIELDVIEW. There are four different structure multiblock grid systems that are generated to simulate the complicated, three-dimensional turbine flowfield. These grids differ mainly in the cooling hole shape and location, especially in the regions of leading edge and trailing edge. In additional to the grid systems, this thesis also studied the effect of two various coolant-to- freestream blowing ratios, 0.8 and 1.2. For the given parameters, the coolant geometry parameter has great influence than the blowing ratio on the distribution of adiabatic cooling- effectiveness. Result on the pressure side, it show just little film-cooling effect near the ejection hole, as the reason of great front pressure gradient. On the suction side, the cooling-effectiveness of the head-shower cooling blade is better than the blade with three rows of slot cooling model. Present study clearly exhibits the effect of secondary flow and the endwall on the film-cooling behavior of turbine blade. The complicate flow structures caused by the interaction of coolant flow and mainstream are also presented. Jr-Ming Miao Chang-hsien Tai 苗志銘 戴昌賢 2001 學位論文 ; thesis 84 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國防大學中正理工學院 === 兵器系統工程研究所 === 89 === The present study is aimed to study the film-cooling effectiveness problem by employing the computational fluid dynamic(CFD)technique. The computational simulation has been performed using four kind of commercial software packages, the grid generator, ICEM/CFD, the solver, CFX4.3, and the flowfield visualible /analysis tools, TECPLOT and FIELDVIEW. There are four different structure multiblock grid systems that are generated to simulate the complicated, three-dimensional turbine flowfield. These grids differ mainly in the cooling hole shape and location, especially in the regions of leading edge and trailing edge. In additional to the grid systems, this thesis also studied the effect of two various coolant-to- freestream blowing ratios, 0.8 and 1.2. For the given parameters, the coolant geometry parameter has great influence than the blowing ratio on the distribution of adiabatic cooling- effectiveness. Result on the pressure side, it show just little film-cooling effect near the ejection hole, as the reason of great front pressure gradient. On the suction side, the cooling-effectiveness of the head-shower cooling blade is better than the blade with three rows of slot cooling model. Present study clearly exhibits the effect of secondary flow and the endwall on the film-cooling behavior of turbine blade. The complicate flow structures caused by the interaction of coolant flow and mainstream are also presented.
author2 Jr-Ming Miao
author_facet Jr-Ming Miao
Kuo jia-wen
郭家
author Kuo jia-wen
郭家
spellingShingle Kuo jia-wen
郭家
Computational study of film-cooled turbine blade with slot-injection and shower-head design
author_sort Kuo jia-wen
title Computational study of film-cooled turbine blade with slot-injection and shower-head design
title_short Computational study of film-cooled turbine blade with slot-injection and shower-head design
title_full Computational study of film-cooled turbine blade with slot-injection and shower-head design
title_fullStr Computational study of film-cooled turbine blade with slot-injection and shower-head design
title_full_unstemmed Computational study of film-cooled turbine blade with slot-injection and shower-head design
title_sort computational study of film-cooled turbine blade with slot-injection and shower-head design
publishDate 2001
url http://ndltd.ncl.edu.tw/handle/26482131093745047386
work_keys_str_mv AT kuojiawen computationalstudyoffilmcooledturbinebladewithslotinjectionandshowerheaddesign
AT guōjiā computationalstudyoffilmcooledturbinebladewithslotinjectionandshowerheaddesign
AT kuojiawen gāoyāwōlúnyèpiànbáomólěngquèshèjìzhīshùzhímónǐfēnxīyǔyánjiū
AT guōjiā gāoyāwōlúnyèpiànbáomólěngquèshèjìzhīshùzhímónǐfēnxīyǔyánjiū
_version_ 1718169727907397632