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[1] Research on the hydrogen injection strategy of a turbulent jet ignition (TJI) rotary engine fueled with natural gas/hydrogen blends
[2] Computational study of hydrogen injection strategy on the combustion performance of a direct injection rotary engine fueled with natural gas/ hydrogen blends
[3] Numerical study of injection strategy on the combustion process in a peripheral ported rotary engine fueled with natural gas/hydrogen blends under the action of apex seal leakage
[4] Research on the ignition strategy of a methanol/gasoline blends rotary engine using turbulent jet ignition mode
[5] Thermal and chemical analysis on the hetero-/homogeneous combustion characteristics of H-2/Air mixture in a micro channel with catalyst segmentation
[6] Research on the hydrogen injection strategy of a direct injection natural gas/hydrogen rotary engine considering apex seal leakage
[7] Numerical Study on Flow Field in a Peripheral Ported Rotary Engine under the Action of Apex Seal Leakage
[8] Numerical Investigation on the Combustion Performance of a Natural Gas/Hydrogen Dual Fuel Rotary Engine under the Action of Apex Seal Leakage
[9] The formation mechanisms of flow field in a compound intake ported rotary engine considering apex seal leakage
[10] Numerical investigation of mixture formation and combustion in a hydrogen direct injection plus natural gas port injection (HDI plus NGPI) rotary engine
[11] The influence of hydrogen injection strategy on mixture formation and combustion process in a port injection (PI) rotary engine fueled with natural gas/hydrogen blends
[12] Effect of hydrogen injection strategies on mixture formation and combustion process in a hydrogen direct injection plus natural gas port injection rotary engine
[13] Experimental and Numerical Study on the Formation Mechanism of Flow Field in a Side-Ported Rotary Engine Considering Apex Seal Leakage
[14] Combined effect of injection timing and injection angle on mixture formation and combustion process in a direct injection (DI) natural gas rotary engine
[15] Numerical investigation of the effect of injection strategy on mixture formation and combustion process in a port injection natural gas rotary engine
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