CI发动机双燃料分离喷射乙醇和柴油性能及排放特性试验研究

P. Babu, P. R. Srivathsan, V. N. Banugopan, S. Prabhakar, K. Annamalai
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引用次数: 10

摘要

随着对柴油发动机排放的限制越来越严格,人们对替代燃烧概念产生了兴趣。双燃料发动机表现出比柴油发动机更好的排放特性,同时具有相似的效率。研究了双燃料发动机实现接近零氮氧化物(NOx)和烟尘颗粒排放的潜力。在SI和柴油发动机中,燃料必须燃烧得很热,以确保火焰在新的“充电”进入之前迅速传遍燃烧室。在双燃料分体式喷射发动机中,由于燃烧发生在整个燃烧室,因此不需要快速蔓延的火焰。因此,燃烧温度可以降低,因此氮污染物的排放可以忽略不计。燃料以低浓度分布在整个汽缸中,因此柴油中燃料丰富区域的烟尘排放不存在。柴油均质燃烧技术是柴油机减少废气排放的一种方法,在柴油机点火前,将一部分燃料送入进气口形成均质预混合气,再将混合气送入气缸口,柴油机直接喷入气缸。在电子燃油喷射的帮助下,制备了均匀的预混合气。
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Experimental investigation on performance and emission characteristics of dual fuel split injection of ethanol and diesel in CI engine
The increasingly strict restrictions being place on diesel engine emissions have the interest in alternative combustion concept. The dual fuel engine exhibits much better emission characteristics than a diesel engine whilst having similar efficiency. The dual fuel engine is investigated for their potential to achieve near zero nitrogen oxide (NOx) and soot-particle emissions. In both SI and diesel engines, the fuel must burn hot to ensure that the flame spreads rapidly through the combustion chamber before a new "charge" enters. In a dual fuel split injection engine, there is no need for a quickly spreading flame because combustion occurs throughout the combustion chamber. As a result, combustion temperatures can be lower, so emissions of nitrogen pollutants are negligible. The fuel is spread in low concentrations throughout the cylinder, so the soot emissions from fuel-rich regions in diesels are not present. As the method for reducing exhaust emissions from diesel engines, a homogenous charge diesel combustion technique is used where by a portion of fuel is supplied into the intake port to form homogenous pre mixture then the mixture is fed into the cylinder port before ignition of the diesel fuel, which is injected directly into the cylinder. The homogeneous pre mixture is prepared with the help of electronic fuel injection.
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