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Communication Dans Un Congrès Année : 2016

Towards Control of HCCI Combustion by Ozone Addition: A Mathematical Approach to Estimate Combustion Parameters

Résumé

The effect of ozone addition on combustion of Homogeneous Charge Compression Ignition (HCCI) engine was investigated to develop a 0D physical model of combustion and to propose a predictive static model of combustion parameters. All parameters of the physical model were identified using a single-cylinder fueled with iso-octane running at constant engine speed (1500rpm) and equivalence ratio (ϕ= 0.3) but various EGR rates and ozone rates. Experimental data were used to validate the physical model. Results show that the 0D combustion model yielded good results to capture combustion parameters like in-cylinder maximum pressure (Pmax), corresponding angle (CADpmax) and the crank angle degree when 50% of the fuel had burned (CA50). All these parameter have been found strongly dependent on ozone addition and EGR rate. Then, mathematical equations were developped presented to describe the static relation between combustion parameters and both EGR rate and ozone addition.
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Dates et versions

hal-01399689 , version 1 (20-11-2016)

Identifiants

  • HAL Id : hal-01399689 , version 1

Citer

Salim Sayssouk, Dominique Nelson Gruel, Christian Caillol, Pascal Higelin, Yann Chamaillard. Towards Control of HCCI Combustion by Ozone Addition: A Mathematical Approach to Estimate Combustion Parameters. 8th IFAC Symposium Advances in Automotive Control, AAC 2016, Jun 2016, Norrköping, Sweden. ⟨hal-01399689⟩
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