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An Experimental Study on the Performance and Emission of the diesel/CNG Dual-Fuel Combustion Mode in a Stationary CI Engine

机译:固定式CI发动机柴油/ CNG双燃料燃烧模式性能和排放的实验研究

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摘要

One of the possibilities to reduce diesel fuel consumption and at the same time reduce the emission of diesel engines, is the use of alternative gaseous fuels, so far most commonly used to power spark ignition engines. The presented work concerns experimental research of a dual-fuel compression-ignition (CI) engine in which diesel fuel was co-combusted with CNG (compressed natural gas). The energy share of CNG gas was varied from 0% to 95%. The study showed that increasing the share of CNG co-combusted with diesel in the CI engine increases the ignition delay of the combustible mixture and shortens the overall duration of combustion. For CNG gas shares from 0% to 45%, due to the intensification of the combustion process, it causes an increase in the maximum pressure in the cylinder, an increase in the rate of heat release and an increase in pressure rise rate. The most stable operation, similar to a conventional engine, was characterized by a diesel co-combustion engine with 30% and 45% shares of CNG gas. Increasing the CNG share from 0% to 90% increases the nitric oxide emissions of a dual-fuel engine. Compared to diesel fuel supply, co-combustion of this fuel with 30% and 45% CNG energy shares contributes to the reduction of hydrocarbon (HC) emissions, which increases after exceeding these values. Increasing the share of CNG gas co-combusted with diesel fuel, compared to the combustion of diesel fuel, reduces carbon dioxide emissions, and almost completely reduces carbon monoxide in the exhaust gas of a dual-fuel engine.
机译:减少柴油消耗的可能性之一,同时减少了柴油发动机的排放,是使用替代气体燃料,到目前为止最常用于电火花点火发动机。该论文关注双燃料压缩点火(CI)发动机,其中柴油是共同燃烧与CNG的实验研究(压缩天然气)。 CNG气体的能量份额从0%变化至95%。研究表明,增加CNG的份额共同燃烧与在CI发动机柴油增加了可燃混合气的点火延迟,缩短燃烧的总持续时间。对于从0%至45%的CNG气体股票,由于燃烧过程的强化,它导致气缸中的最大压力增加,热释放速率增加和压力上升速率的增加。最稳定的操作,类似于传统的发动机,其特点是用CNG气体的30%和45%的股份柴油混合燃烧发动机。从0%增加CNG份额至90%增加了双燃料发动机的一氧化氮的排放。相比柴油燃料供给,该燃料用30%和45%压缩天然气的能量股有助于减少碳氢化合物(HC)的排放量,超出这些值之后,增加的混合燃烧。增加CNG气体的份额共燃烧用柴油燃料相比,柴油燃料的燃烧,减少了二氧化碳的排放量,并几乎完全降低了双燃料发动机的排气气体中的一氧化碳。

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