[EN] This experimental work investigates the operational limits of the reactivity controlled compression ignition combustion concept in a light-duty single-cylinder diesel engine using the stock compression ratio (17.1:1) with specific constraints. In addition, the effects of using different direct-injected fuels on engine-out emissions and performance are analyzed. First, an engine mapping was performed using diesel and gasoline as direct-injected and port-injected fuels, respectively. The operational limits of the reactivity controlled compression ignition concept have been found to be confined in the region defined from 2 to 5 bar indicated mean effective pressure at 1000 rev/min and from 4 to 8 bar indicated mean effective pressure at 3...
[EN] Recent emission legislation in the marine sector has emphasized the need to reduce nitrogen oxi...
[EN] Reactivity controlled compression ignition (RCCI) combustion has demonstrated to be able to avo...
In-cylinder blending of gasoline and diesel to achieve Reactivity Controlled Compression Ignition (R...
[EN] This experimental work investigates the operational limits of the reactivity controlled compres...
[EN] This experimental work investigates the capabilities of the reactivity controlled compression i...
[EN] This work shows the capabilities of E85 fuel to be used as low reactivity fuel in a high compre...
This work investigates the effect of low reactivity fuel characteristics and blending ratio on low l...
This work investigates the capabilities of the dual-mode reactivity controlled compression ignition/...
An experimental and numerical study has been carried out to understand mixing and auto-ignition proc...
Reactivity Controlled Compression Ignition (RCCI) engines hold promise for decreasing NOx and partic...
[EN] This work compares the performance and emissions of two dual-mode combustion concepts over diff...
This is the author's version of a work that was accepted for publication in International Journal of...
Reactivity Controlled Compression Ignition concept offers an ultra-low nitrogen oxide and soot emiss...
AbstractThe importance of diesel engines for human application is growing day by day. The engine ope...
Reactivity controlled compression ignition (RCCI) combustion has been introduced to implement contro...
[EN] Recent emission legislation in the marine sector has emphasized the need to reduce nitrogen oxi...
[EN] Reactivity controlled compression ignition (RCCI) combustion has demonstrated to be able to avo...
In-cylinder blending of gasoline and diesel to achieve Reactivity Controlled Compression Ignition (R...
[EN] This experimental work investigates the operational limits of the reactivity controlled compres...
[EN] This experimental work investigates the capabilities of the reactivity controlled compression i...
[EN] This work shows the capabilities of E85 fuel to be used as low reactivity fuel in a high compre...
This work investigates the effect of low reactivity fuel characteristics and blending ratio on low l...
This work investigates the capabilities of the dual-mode reactivity controlled compression ignition/...
An experimental and numerical study has been carried out to understand mixing and auto-ignition proc...
Reactivity Controlled Compression Ignition (RCCI) engines hold promise for decreasing NOx and partic...
[EN] This work compares the performance and emissions of two dual-mode combustion concepts over diff...
This is the author's version of a work that was accepted for publication in International Journal of...
Reactivity Controlled Compression Ignition concept offers an ultra-low nitrogen oxide and soot emiss...
AbstractThe importance of diesel engines for human application is growing day by day. The engine ope...
Reactivity controlled compression ignition (RCCI) combustion has been introduced to implement contro...
[EN] Recent emission legislation in the marine sector has emphasized the need to reduce nitrogen oxi...
[EN] Reactivity controlled compression ignition (RCCI) combustion has demonstrated to be able to avo...
In-cylinder blending of gasoline and diesel to achieve Reactivity Controlled Compression Ignition (R...