Knock characteristics and combustion regime diagrams of multiple combustion modes based on experimental investigations

L Zhou, J Hua, H Wei, K Dong, D Feng, G Shu - Applied Energy, 2018 - Elsevier
Spark assisted compression ignition (SACI) is a kind of combustion mode that bridges the
gap between homogeneous charge compression ignition (HCCI) under low load and spark …

Knock characteristics and combustion regime diagrams of multiple combustion modes based on experimental investigations

L Zhou, J Hua, H Wei, K Dong, D Feng… - Applied Energy, 2018 - econpapers.repec.org
Spark assisted compression ignition (SACI) is a kind of combustion mode that bridges the
gap between homogeneous charge compression ignition (HCCI) under low load and spark …

Knock characteristics and combustion regime diagrams of multiple combustion modes based on experimental investigations

L Zhou, J Hua, H Wei, K Dong, D Feng, G Shu - Applied Energy, 2018 - inis.iaea.org
[en] Highlights:• Combustion and knock characteristics of HCCI, SACI and SI were
compared.• Region diagram of HCCI and SACI was proposed in terms of i-EGR and air-fuel …

Knock characteristics and combustion regime diagrams of multiple combustion modes based on experimental investigations

L Zhou, J Hua, H Wei, K Dong, D Feng… - Applied Energy, 2018 - ui.adsabs.harvard.edu
Spark assisted compression ignition (SACI) is a kind of combustion mode that bridges the
gap between homogeneous charge compression ignition (HCCI) under low load and spark …

Knock characteristics and combustion regime diagrams of multiple combustion modes based on experimental investigations

L Zhou, J Hua, H Wei, K Dong, D Feng, G Shu - Applied Energy, 2018 - ideas.repec.org
Spark assisted compression ignition (SACI) is a kind of combustion mode that bridges the
gap between homogeneous charge compression ignition (HCCI) under low load and spark …

[引用][C] Knock characteristics and combustion regime diagrams of multiple combustion modes based on experimental investigations

L Zhou, J Hua, H Wei, K Dong, D Feng, G Shu - 2018