An assessment of the dual-mode reactivity controlled compression ignition/conventional diesel combustion capabilities in a EURO VI medium-duty diesel engine fueled with an intermediate ethanol-gasoline blend and biodiesel

被引:53
作者
Benajes, Jesus [1 ]
Garcia, Antonio [1 ]
Monsalve-Serrano, Javier [1 ]
Balloul, Iyad [2 ]
Pradel, Gerard [2 ]
机构
[1] Univ Politecn Valencia, CMT Motores Tertn, Camino Vera S-N, E-46022 Valencia, Spain
[2] VOLVO Grp Trucks Technol, 99 Route Lyon, F-69806 St Priest, France
关键词
Reactivity controlled compression ignition; Dual-fuel combustion; Dual-mode operation; EURO VI emissions; Biofuels; PISTON BOWL GEOMETRY; RCCI ENGINE; EMISSIONS; PERFORMANCE; TEMPERATURE; PRESSURE; RATIO;
D O I
10.1016/j.enconman.2016.06.059
中图分类号
O414.1 [热力学];
学科分类号
摘要
This work investigates the capabilities of the dual-mode reactivity controlled compression ignition/conventional diesel combustion engine operation to cover the full operating range of a EURO VI medium-duty diesel engine with compression ratio of 17.5:1. This concept is based on covering all the engine map switching between the reactivity controlled compression ignition and the conventional diesel, combustion operating modes. Specifically, the benefits of reactivity controlled compression ignition combustion are exploited whenever possible according to certain restrictions, while the conventional diesel combustion operation is used to cover the zones of the engine map in which the reactivity controlled compression ignition operation is limited. The experiments were conducted using a single-cylinder research diesel engine derived from the multi-cylinder production engine. In addition, considering the mandatory presence of biofuels in the future context of road transport and the ability of ethanol to be blended with gasoline, the low reactivity fuel used in the study is a blend of 20% ethanol by volume with 80% of 95 octane number gasoline. Moreover, a diesel containing 7% of biodiesel has been used as high reactivity fuel. Firstly, a reactivity controlled compression ignition mapping is performed to check the operational limits of the concept in this engine platform. Later, based on the results, the potential of the dual-mode concept is discussed. Results suggest that, under the constraints imposed, reactivity controlled compression ignition combustion can be utilized between 25% and 35% load. In this region of the map, reactivity controlled compression ignition can provide up to 2% increased gross indicated efficiency than conventional diesel combustion, but led to lower efficiency at low engine speeds. In addition, it was demonstrated that the regeneration periods of the diesel particulate filter during dual-mode operation can be reduced more than twice, which entails a great reduction of the diesel fuel amount injected in the exhaust line. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:381 / 391
页数:11
相关论文
共 45 条
[1]  
Agarwal A., NOVEL COMBUSTION CON
[2]  
[Anonymous], 2009011275 SAE
[3]  
Benajes J, 2014, SAE INT J ENG, V7
[4]   Effects of piston bowl geometry on Reactivity Controlled Compression Ignition heat transfer and combustion losses at different engine loads [J].
Benajes, Jesus ;
Garcia, Antonio ;
Manuel Pastor, Jose ;
Monsalve-Serrano, Javier .
ENERGY, 2016, 98 :64-77
[5]   Effects of low reactivity fuel characteristics and blending ratio on low load RCCI (reactivity controlled compression ignition) performance and emissions in a heavy-duty diesel engine [J].
Benajes, Jesus ;
Molina, Santiago ;
Garcia, Antonio ;
Monsalve-Serrano, Javier .
ENERGY, 2015, 90 :1261-1271
[6]   The potential of RCCI concept to meet EURO VI NOx limitation and ultra-low soot emissions in a heavy-duty engine over the whole engine map [J].
Benajes, Jesus ;
Pastor, Jose V. ;
Garcia, Antonio ;
Monsalve-Serrano, Javier .
FUEL, 2015, 159 :952-961
[7]   An experimental investigation on the influence of piston bowl geometry on RCCI performance and emissions in a heavy-duty engine [J].
Benajes, Jesus ;
Pastor, Jose V. ;
Garcia, Antonio ;
Monsalve-Serrano, Javier .
ENERGY CONVERSION AND MANAGEMENT, 2015, 103 :1019-1030
[8]   Effects of direct injection timing and blending ratio on RCCI combustion with different low reactivity fuels [J].
Benajes, Jesus ;
Molina, Santiago ;
Garcia, Antonio ;
Monsalve-Serrano, Javier .
ENERGY CONVERSION AND MANAGEMENT, 2015, 99 :193-209
[9]   Performance and engine-out emissions evaluation of the double injection strategy applied to the gasoline partially premixed compression ignition spark assisted combustion concept [J].
Benajes, Jesus ;
Molina, Santiago ;
Garcia, Antonio ;
Monsalve-Serrano, Javier ;
Durrett, Russell .
APPLIED ENERGY, 2014, 134 :90-101
[10]   Conceptual model description of the double injection strategy applied to the gasoline partially premixed compression ignition combustion concept with spark assistance [J].
Benajes, Jesus ;
Molina, Santiago ;
Garcia, Antonio ;
Monsalve-Serrano, Javier ;
Durrett, Russell .
APPLIED ENERGY, 2014, 129 :1-9