2023
DOI: 10.1016/j.applthermaleng.2023.120240
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Derivation and validation of heat transfer model for Spark-Ignition engine cylinder head

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Cited by 7 publications
(4 citation statements)
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“…Hassan et al [29] investigated the applicability of heat transfer coefficients using the Woschni [21] equations for an engine running on gasoline fuel; 1D and 3D MMs were used. With a four-stroke, single-cylinder, 114.8 cm 3 , high-speed, 1500-9500 min −1 motorcycle engine as the study subject, they investigated the temperature conditions of the intake and exhaust valves and the heat balance of the engine.…”
Section: Factors Influencing Thermal Loading Of Engine Parts and Thei...mentioning
confidence: 99%
“…Hassan et al [29] investigated the applicability of heat transfer coefficients using the Woschni [21] equations for an engine running on gasoline fuel; 1D and 3D MMs were used. With a four-stroke, single-cylinder, 114.8 cm 3 , high-speed, 1500-9500 min −1 motorcycle engine as the study subject, they investigated the temperature conditions of the intake and exhaust valves and the heat balance of the engine.…”
Section: Factors Influencing Thermal Loading Of Engine Parts and Thei...mentioning
confidence: 99%
“…There are studies assessing the level of heat transfer in the channels and elements of the head of a piston engine [4][5][6]. M. Cerdoun and co-authors studied the mutual influence of heat flow for the inlet and outlet channels in the block head [4].…”
Section: Introductionmentioning
confidence: 99%
“…M.A.S.M. Hassan and colleagues evaluated the rate of heat transfer in the parts of the engine block head, taking into account the flows in the intake and exhaust channels, as well as the engine cylinder [6]. It was found that as the engine crankshaft speed increases, the thermal load on the elements in the engine block head also increases.…”
Section: Introductionmentioning
confidence: 99%
“…The application of heat conduction problems with time-dependent boundary conditions can be broadly applied in a wide range of engineering fields, such as time-varying heating on walls or plate panels, laser heating on solids, and the design of mechanical parts (such as those in turbines and engines [1,2]). In general, the types of time-dependent boundary conditions at the boundary surface include (1) the first type: specified temperature distribution (Dirichlet boundary condition); (2) the second type: specified heat flux distribution; and (3) the third type: convective heat exchange with the environment at a specified temperature. There are many methods to solve these three types of problems, such as pure numerical method, approximate method, and exact method.…”
Section: Introductionmentioning
confidence: 99%