首页> 外文期刊>International journal of engine research >Experimental investigation of hydraulic effects of two-stage fuel injection on fuel-injection systems and diesel combustion in a high-speed optical common-rail diesel engine
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Experimental investigation of hydraulic effects of two-stage fuel injection on fuel-injection systems and diesel combustion in a high-speed optical common-rail diesel engine

机译:两级燃油喷射对高速光学共轨柴油机燃油喷射系统和柴油燃烧的水力影响的实验研究

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摘要

In order to meet the ever more stringent emission standards, significant efforts have been devoted to the research and development of internal combustion engines. The requirements for more efficient and responsive diesel engines have led to the introduction and implementation of multiple injection strategies. However, the effects of such injection modes on the hydraulic systems, such as the high-pressure pipes and fuel injectors, must be thoroughly examined and compensated for since the combustion and the formation of pollutants in direct-injection engines are directly influenced by the spatial and temporal distribution of the injected fuel within the combustion chamber. This study investigated the hydraulic effects of two-stage fuel injection on diesel combustion and emissions. The fuel-injection system was characterised for all the tested strategies through the measurement of the fuel-injection rate and quantity. In particular, the interaction between the two injection events was identified. The effects of two-stage injection, dwell angle and the interactions between two consecutive injection events on the combustion process and the emissions were investigated in a high-speed direct-injection single-cylinder optical diesel engine using heat-release analysis and high-speed fuel spray and combustion visualisation techniques. The results indicated that the two-stage injection strategy has the potential for simultaneous reduction of nitrogen oxide, soot and unburned hydrocarbon emissions. The results suggested that an optimum fuel quantity in the first injection exists, 0-30%, with which simultaneous reduction of nitrogen oxide, soot and unburned hydrocarbon emissions can be achieved with the added benefits of improved engine performance, fuel economy and combustion noise. However, higher soot emissions were produced, mainly due to the interaction between the two consecutive fuel-injection events whereby the fuel sprays during the second injection were injected into burning regions, as well as reduced soot oxidation due to the continuation of the combustion into the expansion stroke.
机译:为了满足日益严格的排放标准,已经致力于内燃机的研究和开发。对更高效,响应速度更快的柴油发动机的要求导致了多重喷射策略的引入和实施。但是,这种喷射方式对液压系统(例如高压管道和喷油器)的影响必须进行彻底检查和补偿,因为直喷式发动机的燃烧和污染物形成直接受到空间的影响。燃烧室内喷射燃料的时间和分布。这项研究调查了两级燃油喷射对柴油燃烧和排放的水力影响。通过测量燃油喷射速率和数量,对所有测试策略的燃油喷射系统进行了表征。特别地,确定了两个注射事件之间的相互作用。在高速直喷单缸光学柴油机中,利用放热分析和高速分析了两阶段喷射,停留角以及两个连续喷射事件之间的相互作用对燃烧过程和排放的影响。燃油喷雾和燃烧可视化技术。结果表明,两阶段喷射策略具有同时减少氮氧化物,烟灰和未燃烧碳氢化合物排放的潜力。结果表明,首次喷射的最佳燃料量为0%至30%,可以同时减少氮氧化物,烟灰和未燃烧的碳氢化合物排放,并具有改善发动机性能,燃料经济性和燃烧噪音的额外好处。然而,产生更高的烟尘排放,主要是由于两次连续的燃油喷射事件之间的相互作用,从而第二次喷射过程中的燃油喷雾被喷​​入燃烧区域,以及由于燃烧持续进入烟气中而减少了烟尘氧化。膨胀冲程。

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