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Universally Applicable Equation for the Instantaneous Heat Transfer Coefficient in the Internal Combustion Engine
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A Model for the Instantaneous Heat Transfer and Turbulence in a Spark Ignition Engine
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Experimental Instantaneous Heat Fluxes in a Diesel Engine and Their Correlation
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A Model for the Investigation of Temperature, Heat Flow, and Friction Characteristics during Engine Warm up
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Shayler PJ, Christian SJ, and Ma T., A Model for the Investigation of Temperature, Heat Flow, and Friction Characteristics During Engine Warm up, SAE Paper 931153, Proc. of Int. Conf. VTMS, pp 667-676, SAE Pub. P- 263 (1993).
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Progress on Modelling Engine Thermal Behaviour for VTMS Aplications
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Development and Evaluation of a Friction Model for Spark Ignition Engines
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Development of a Method for Predicting Heat Transfer to Engine Coolant
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85072426520
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Effect of Coolant Mixture Composition on Engine Heat Rejection Rate
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Shayler PJ, Chick JP, and Ma T., Effect of Coolant Mixture Composition on Engine Heat Rejection Rate, SAE Paper 960275, (1996).
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An Analytical Study of Exhaust Gas Heat Loss in Piston Engine Exhaust Port
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An Investigation and Analytical Study of Heat Transfer in an Engine Exhaust Port
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An Investigation of Instantaneous Heat Transfer Rates in the Exhaust Port of An Internal Combustion Engine
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Sachdev, R.1
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85072442375
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Effect of Operational Parameters on Structural Temperatures and Coolant of a S.I. Engine
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SAE Pub P- 263
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Alkidas AC, Effect of Operational Parameters on Structural Temperatures and Coolant of a S.I. Engine, SAE Paper 931124, Proc.ofInt.Conf. VTMS, pp 443-458, SAE Pub P- 263 (1993).
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Alkidas, A.C.1
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