Modal analysis of tip vortex cavitation with an insight on how vortex roll-up enhances its instability
被引:20
作者:
Wang, Xincheng
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Wuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R ChinaWuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R China
Wang, Xincheng
[1
]
Bai, Xiaorui
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Wuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R ChinaWuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R China
Bai, Xiaorui
[1
]
Qian, Zhaohui
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机构:
Tsinghua Univ, Dept Energy & Power Engn, State Key Lab Hydrosci & Engn, Beijing 100084, Peoples R ChinaWuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R China
Qian, Zhaohui
[2
]
Cheng, Huaiyu
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Wuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R ChinaWuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R China
Cheng, Huaiyu
[1
]
Ji, Bin
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Wuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R ChinaWuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R China
Ji, Bin
[1
]
机构:
[1] Wuhan Univ, State Key Lab Water Resources & Hydropower Engn Sc, Wuhan 430072, Peoples R China
[2] Tsinghua Univ, Dept Energy & Power Engn, State Key Lab Hydrosci & Engn, Beijing 100084, Peoples R China
The instability mechanism of tip vortex cavitation (TVC) is investigated in the present paper, which is found to be significantly influenced by the roll-up of secondary vortices. The three-dimensional proper orthogonal decom-position (3D-POD) analysis is utilized to identify the coherent structures around the TVC, and a modal turbulence transport theory is introduced to further measure the modal contribution to the TVC instability. According to the dynamic evolution of coherent structure identified by the 3D-POD analysis, the fluctuating component is gradually introduced into the tip vortex together with the roll-up of secondary vortices. Moreover, the dynamic evolution of coherent structure is always accompanied by a significant distribution of modal turbulence kinetic energy (TKE), implying that the TVC instability is promoted along with the merging of secondary vortices into the tip vortex. A deeper understanding is gained with the assistance of the modal turbulence transport theory. It is found that the modal Reynolds stress introduced by the vortex roll-up is the trigger for the local TVC insta-bility, because it can significantly enhance the energy input from mean flow to fluctuating flow.
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
LEE Jeung-Hoon
JUNG Jae-Kwon
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机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
JUNG Jae-Kwon
LEE Kyung-Jun
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机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
LEE Kyung-Jun
HAN Jae-Moon
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机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
HAN Jae-Moon
PARK Hyung-Gil
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机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
PARK Hyung-Gil
SEO Jong-Soo
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h-index: 0
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
LEE Jeung-Hoon
JUNG Jae-Kwon
论文数: 0引用数: 0
h-index: 0
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
JUNG Jae-Kwon
LEE Kyung-Jun
论文数: 0引用数: 0
h-index: 0
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
LEE Kyung-Jun
HAN Jae-Moon
论文数: 0引用数: 0
h-index: 0
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
HAN Jae-Moon
PARK Hyung-Gil
论文数: 0引用数: 0
h-index: 0
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea
PARK Hyung-Gil
SEO Jong-Soo
论文数: 0引用数: 0
h-index: 0
机构:
Samsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,KoreaSamsung Ship Model Basin(SSMB),Marine Research Institute,Samsung Heavy Industries,Science Town,Daejeon 305-380,Korea