Cold start on low compression ratio diesel engine (Record no. 170259)

MARC details
000 -LEADER
fixed length control field 02961nab a2200205 4500
008 - CÓDIGOS DE INFORMACIÓN DE LONGITUD FIJA - INFORMACIÓN GENERAL
Campo de control de longitud fija 260224s2009 xxu
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Laget, O.
9 (RLIN) 41730
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Pacaud, P.
9 (RLIN) 41723
100 1# - RESPONSABLE PERSONAL
Apellido, Nombre Perrin, H.
9 (RLIN) 41731
245 00 - TITULO
Título Cold start on low compression ratio diesel engine
Subtítulo Experimental and 3D RANS computations investigations
260 ## - PUBLICACION, DISTRIBUCION, ETC
Fecha de publicación, distribución, etc. mayo/jun. 2009
270 ## - FECHA DE CARGA
Fecha de carga 07/08/2009 ; 07/08/2009
300 ## - DESCRIPCION FISICA
Otra extensión 22 p. ; 407-429
520 ## - RESUMEN, ETC
Resumen Transcripción del resúmen publicado por el autor: Diesel engines' future emission standards require greatly reducing the pollutant emissions directly at the exit of the engine before post-processing. The reduction of NOx "production" with very low levels of Particulate Matter (PM), HC and CO must be performed without damaging the drivability, and keeping fuel consumption and combustion noise under control. The reduction of the Compression Ratio (CR) is one of the most promising ways to achieve this challenge. The counterpart of reducing Diesel engine CR is the decrease in start ability. As a consequence, a stringent limitation of reducing Diesel CR is cold start requirements. Indeed, reduction of ambient temperature leads to penalties in fuel vaporization and auto-ignition capabilities, even more at very low temperature (-20°C and below). This paper presents the work performed on a HSDI Common-Rail Diesel 4-cylinder engine. Three kinds of investigations were used: experiments performed at very low temperature (down to -25°C); incylinder imaging (videoscope) and three-dimensional Computational Fluid Dynamics (CFD) computations in cold start conditions. The combustion chamber was adapted in order to reach a low compression ratio (CR 13.7:1) by modifying the piston bowl shape. First, experimental results obtained with a low CR engine are compared with those obtained with the original conventional CR engine. Then, a complete recalibration of injection settings (fuel quantity and timing, injection pressure, etc.) was carried out. It allows one to significantly reduce start delay with a low CR engine and the reference start delay with the conventional CR becomes reachable. In addition, effects of combustion chamber design such as spray position according to the glow plug were studied and show a great potential regarding behavior in cold conditions in particular, in order to reduce start delay again in such conditions. In order to complete the engine tests, CFD calculations were performed during the starting operation in ambient cold conditions (-20°C). The obtained results are in good agreement with optical observations and in-cylinder pressure measurements. Correlations between experiments and calculations give consistent explanations concerning the different phenomena occurring during cold start.
581 ## - ESTADO DE COLECCIÓN
Estado de colección 3
773 0# - CORRECCIÓN
Título Oil and Gas Science and Technology
Partes relacionadas 64
942 ## - DESC. DE MATERIAL
Tipo de item KOHA Artículo de Revista
Holdings
Biblioteca propietaria Biblioteca actual Fecha de adquisición Inventario Total de préstamos Inventario Fecha de carga Tipo de item KOHA
Biblioteca Alejandro Angel Bulgheroni Biblioteca Alejandro Angel Bulgheroni 05/03/2026 200045086   200045086 05/03/2026 Artículo de Revista


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