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Effects of Premixed Low Temperature Combustion of Fuel Blends with High Resistance to Auto-ignition on Performances and Emissions in a High Speed Diesel Engine

机译:预混料低温燃烧燃料混合具有高耐柴油机性能和排放的高耐燃料的影响

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This paper reports results of an experimental investigation to demonstrate the potential to employ blends of fuels having low cetane numbers that can provide high resistance to autoignition to reduce simultaneously NO_x and smoke. Because of the higher resistance to auto-ignition, blends of diesel and gasoline at different volume fraction may provide more time for the mixture preparation by increasing the ignition delay. The result produces the potential to operate under partially premixed low temperature combustion with lower levels of EGR without excessive penalties on fuel efficiency. In addition to the diesel fuel, the tested blends were mixed by the baseline diesel with 20% and 40% of commercial EURO IV 98 octane gasoline by volume, denoted G20 and G40. The experimental activity has been performed on a turbocharged, water cooled, DI diesel engine, equipped with a common rail injection system. The engine equipment includes an exhaust gas recirculation system controlled by an external driver, a piezo-quartz pressure transducer to detect the in-cylinder pressure signal and a current probe to acquire the energizing current to the injectors. Engine tests have been carried out at the engine speeds of 2500 rpm and a BMEP of 0.8 MPa exploring the effect of the start of injection, exhaust gas recirculation, injection pressure on combustion behavior and engine out emissions. The main results of the investigation have provided to realize a premixed low temperature combustion by the management of EGR rate, injection pressure and the longer ignition delay induced jointly by the higher resistance to auto ignition of fuel blends and their higher volatility. Results of smoke emissions have been cut down to zero for G20 and G40 blends at moderate level of injection pressure and oxygen concentration at the intake.
机译:本文报道的实验研究结果证明,以具有低十六烷值,可以提供高抗自燃同时降低NO_x的烟雾燃料的混合雇佣的潜力。因为到自动点火较高电阻的,在不同的体积分数柴油和汽油的共混物可以通过增加点火延迟提供用于制备混合物更多的时间。结果产生具有不会对燃料效率惩罚过度较低水平EGR的下部分预混低温燃烧来操作的潜力。除柴油燃料,被测试的共混物混合,由基线柴油与20%和商业EURO IV 98辛烷值汽油的40体积%,表示为G20和G40。实验活性上的涡轮增压,水冷,DI柴油机被执行时,配备有共轨喷射系统。发动机设备包括由外部驱动器,压电石英压力换能器来检测缸内压力信号和电流探头获取所述激励电流到喷射控制的废气再循环系统。发动机测试已经以2500rpm的发动机转速和0.8兆帕的探索注射,废气再循环,注射压力开始对燃烧行为和发动机排出的排放物的影响的BMEP进行的。调查的主要结果提供了实现通过EGR率,喷射压力和燃料混合物的自动点火和它们的更高的挥发性较高的电阻共同引起的较长的点火延迟的一个管理预混低温燃烧。烟排放量的结果已经切下降到零为G20和G40在共混物的注射压力和氧气浓度在进气的中等水平。

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