Flow structure and heat transfer characteristics of sweeping and steady impingement jets with/without chevrons on a semi-circular concave surface
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作者:
Khan, Mohammed S.
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United Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab EmiratesUnited Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab Emirates
Khan, Mohammed S.
[1
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Hamdan, Mohammad O.
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Amer Univ Sharjah, Mech Engn Dept, Sharjah, U Arab EmiratesUnited Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab Emirates
Hamdan, Mohammad O.
[2
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Al-Omari, Salah A. B.
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United Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab EmiratesUnited Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab Emirates
Al-Omari, Salah A. B.
[1
]
Elnajjar, Emad
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United Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab EmiratesUnited Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab Emirates
Elnajjar, Emad
[1
]
机构:
[1] United Arab Emirates Univ, Mech & Aerosp Engn Dept, Abu Dhabi, U Arab Emirates
[2] Amer Univ Sharjah, Mech Engn Dept, Sharjah, U Arab Emirates
Striving for improved gas turbine performance requires operating at higher gas flow temperatures, posing challenges in preserving the structural integrity of the gas turbine. To respond to these challenges, gas turbine manufacturers have turned to internal cooling and jet impingement to provide an effective solution for cooling the leading edge of the gas turbine blades. Fluidic oscillator is known for its sweeping behavior and expansive coverage of targeted surface and, thus, it can efficiently remove heat. In this study, the author numerically simulated the cooling performance of the leading edge of the gas turbine blades under constant heat flux while using four different configurations of jet impingement: a sweeping jet, a sweeping jet with chevrons, a steady jet, and a steady jet with chevrons. The results showed that the sweeping jet configuration with chevrons outperformed the steady jet configurations owing to oscillating jet impingement and a higher intensity of turbulence that increased the entrainment of jet flow. Under the configuration of a sweeping jet with chevrons, the targeted surface recorded an average Nusselt number that is 19.2% higher than the one with a steady jet without chevrons, along with a more uniform distribution of the surface temperature. The outstanding behavior of the sweeping jet with chevrons is due to the its internal flow behavior, i.e., oscillating flow nature of the sweeping jet with augmented turbulence at the exit of the chevron's nozzle.
机构:
Univ Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, MalaysiaUniv Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, Malaysia
Ajeel, Raheem K.
Fayyadh, Saba N.
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Univ Kebangsaan Malaysia, Fac Sci & Technol, Chem Dept, Bangi 43600, Selangor, MalaysiaUniv Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, Malaysia
Fayyadh, Saba N.
Sopian, K.
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Univ Teknol Petronas, Dept Mech Engn, Seri Iskandar 32610, Perak, MalaysiaUniv Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, Malaysia
Sopian, K.
Sultan, Sakhr M.
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Univ Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, MalaysiaUniv Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, Malaysia
Sultan, Sakhr M.
Salim, Wan Saiful-Islam Wan
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Univ Tun Hussein Onn Malaysia, Fac Mech & Mfg Engn, Batu Pahat 86400, Johor, MalaysiaUniv Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, Malaysia
Salim, Wan Saiful-Islam Wan
Tso, C. P.
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Multimedia Univ, Fac Engn & Technol, Jalan Ayer Keroh Lama, Melaka 75450, MalaysiaUniv Kebangsaan Malaysia, Solar Energy Res Inst, Bangi 43600, Selangor, Malaysia
机构:
North China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Chinese Acad Sci, Inst Engn Thermophys, Key Lab Light Duty Gas Turbine, Beijing 100190, Peoples R ChinaNorth China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Kong, Xiangcan
Zhang, Yanfeng
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North China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Chinese Acad Sci, Inst Engn Thermophys, Key Lab Light Duty Gas Turbine, Beijing 100190, Peoples R China
Univ Chinese Acad Sci, Beijing 100049, Peoples R ChinaNorth China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Zhang, Yanfeng
Li, Guoqing
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Chinese Acad Sci, Inst Engn Thermophys, Key Lab Light Duty Gas Turbine, Beijing 100190, Peoples R China
Univ Chinese Acad Sci, Beijing 100049, Peoples R ChinaNorth China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Li, Guoqing
Lu, Xingen
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机构:
North China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Chinese Acad Sci, Inst Engn Thermophys, Key Lab Light Duty Gas Turbine, Beijing 100190, Peoples R China
Univ Chinese Acad Sci, Beijing 100049, Peoples R ChinaNorth China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Lu, Xingen
Zhu, Junqiang
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机构:
North China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Chinese Acad Sci, Inst Engn Thermophys, Key Lab Light Duty Gas Turbine, Beijing 100190, Peoples R China
Univ Chinese Acad Sci, Beijing 100049, Peoples R ChinaNorth China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China
Zhu, Junqiang
Xu, Jinliang
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North China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R ChinaNorth China Elect Power Univ, Sch Energy Power & Mech Engn, Beijing 102206, Peoples R China