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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 56, 2009 - Issue 7
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Original Articles

Development of an Oil Gallery Cooling Model for Internal Combustion Engines Considering the Cocktail Shaker Effect

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Pages 563-578 | Received 21 Nov 2008, Accepted 21 Aug 2009, Published online: 23 Oct 2009

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Bing Liang, Pingjian Ming & Guopeng Yu. (2022) Experimental visualization of two-phase flow inside a real-size piston of a crosshead-type marine engine. International Journal of Green Energy 19:12, pages 1267-1275.
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Bing Liang, Pingjian Ming, Guopeng Yu, Zhaohui Hao & Haiyang Zhao. (2023) Experimental visualization of the gas-liquid two-phase flow inside the multi-cavity during reciprocating motion. International Journal of Engine Research 24:8, pages 3478-3491.
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Guangyi Xie, Jilin Lei, Xiwen Deng, Jinkun Wang & Hao Chen. (2023) Numerical investigation on two-phase oscillating flow and heat transfer enhancement for a cooling channel with ribs. International Journal of Thermal Sciences 187, pages 108191.
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Aravindh Babu, Georgios Koutsakis, Sage Kokjohn & Michael Andrie. (2022) Experimental and Analytical Study of Temperature Swing Piston Coatings in a Medium-Duty Diesel Engine. SAE International Journal of Advances and Current Practices in Mobility 5:1, pages 235-248.
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Anselm Hopf, Frank Kraemer, Paul Turner cEng & Carsten Weber. (2022) CFD Simulation of Oil Jet Piston Cooling Applied to Pistons with Cooling Gallery. SAE International Journal of Advances and Current Practices in Mobility 5:1, pages 437-452.
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Guangyi Xie, Jilin Lei, Xiwen Deng, Dewen Jia, Wei Deng, Xiangsen Jiang & Jun Wen. (2022) Study on the effect of inclination angle on two-phase oscillating flow and heat transfer characteristics of piston cooling galleries. Case Studies in Thermal Engineering 38, pages 102355.
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Jilin Lei, Yang Pan, Xiwen Deng, Yuhua Bi & Dewen Jia. (2021) Numerical investigation on the effects of spatial angle on oscillating flow and heat transfer characteristics of piston cooling galleries. Applied Thermal Engineering 191, pages 116822.
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Loic Wendling, Marek Behr, Anselm Hopf, Frank Kraemer, Carsten Weber & Paul Turner. (2019) CFD Simulation of Oil Jets for Piston Cooling Applications Comparing the Level Set and the Volume of Fluid Method. SAE International Journal of Advances and Current Practices in Mobility 1:2, pages 550-561.
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Xiaoli Yu, Dong Yi, Yuqi Huang, Yiji Lu & Anthony Paul Roskilly. (2019) Experimental investigation of two-phase flow and heat transfer performance in a cooling gallery under forced oscillation. International Journal of Heat and Mass Transfer 132, pages 1306-1318.
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Shyy Woei Chang & Kuo-Ching Yu. (2018) Thermal performance of reciprocating two-phase thermosyphon with nozzle. International Journal of Thermal Sciences 129, pages 14-28.
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Xiwen Deng, Jilin Lei, Jun Wen, Zhigao Wen & Lizhong Shen. (2017) Numerical investigation on the oscillating flow and uneven heat transfer processes of the cooling oil inside a piston gallery. Applied Thermal Engineering 126, pages 139-150.
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Mohammad Izadi Najafabadi, Mostafa Mirsalim, Vahid Hosseini & Shahabeddin Alaviyoun. (2014) Experimental and numerical study of piston thermal management using piston cooling jet. Journal of Mechanical Science and Technology 28:3, pages 1079-1087.
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Zhelin Dong, Guohua Chen, Yankun Jiang & Chunfa Wang. Modeling of Transient Heat Transfer for the 3-D Coupling Components in an Internal-Combustion Engine. Modeling of Transient Heat Transfer for the 3-D Coupling Components in an Internal-Combustion Engine.
David C. Luff, Theo Law, Paul J. Shayler & Ian Pegg. (2012) The Effect of Piston Cooling Jets on Diesel Engine Piston Temperatures, Emissions and Fuel Consumption. SAE International Journal of Engines 5:3, pages 1300-1311.
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Yuanhong Li & Song-Charng Kong. (2011) Coupling conjugate heat transfer with in-cylinder combustion modeling for engine simulation. International Journal of Heat and Mass Transfer 54:11-12, pages 2467-2478.
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