均质装药压缩点火发动机燃烧特性实验研究

R. Chaudhari, P. Gharde
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引用次数: 0

摘要

在柴油机压燃式发动机中,同时降低NOx和PM是一项极具挑战性的任务。最有利的解决方案是HCCI。它是一个脉冲自动点火非常稀薄的空气燃料混合物在多个站点。它同时具有CI和SI引擎的优点。它还像CI发动机一样具有更高的热效率,更高的ROHR,最小的DOC,没有火焰传播,主要是同时控制NOx和PM。均相混合气在HCCI燃烧中由于ROHR较高,有利于降低DOC。本实验是在双缸发动机上进行的;它们分别在HCCI和常规CI模式下工作。同时使用DI和PI系统来研究性能特性。最难的部分是制备均匀的混合气以供燃烧。由于柴油是一种低挥发性燃料,制备均质混合物比较困难,因此柴油汽化器应运而生。EGR用于控制ROHR。为了研究不同相对空燃比(λ)下的燃烧特性,进行了实验。DOC和ROHR随λ的增大而增大。EGR稀释了均匀混合物,并通过保持较低的汽缸最高温度来减少NOx排放。增压压力的增加是造成短DOC和高燃烧速率的原因。此外,与HCCI中的PI相比,DI法的平均有效压力提高了3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Investigation of Combustion Characteristics of Homogenous Charge Compression Ignition Engine
In diesel compression ignition engine, simultaneous reduction of NOx and PM is extremely challenging task. The most favorable solution for this is HCCI. It is an impulsive auto ignition of very lean air fuel mixture at multiple sites. It has advantages of both CI and SI engines. It also gives higher thermal efficiency like CI engines, higher ROHR, minimum DOC and has no flame propagation and mainly it has simultaneous control over NOx as well as PM. The combustion of homogeneous mixture in HCCI combustion helps in reducing DOC because of higher ROHR. The present experiment is conducted on engine having two cylinders; they are made to operate on HCCI and conventional CI mode respectively. Both DI and PI systems were used simultaneously to investigate the performance characteristics. The toughest part is to prepare homogeneous mixture for combustion. As the diesel is a low volatile fuel, the preparation of homogeneous mixture is difficult therefore diesel vaporizer comes into picture. EGR is used to control the ROHR. To investigate the combustion characteristics experiment was performed at different relative air fuel ratios (λ). The DOC and ROHR is increases with increasing λ. EGR dilutes the homogeneous mixture and leads to minimum NOx emission by keeping maximum temperature in cylinder low. The increased boost pressure is responsible for short DOC and high rate of combustion. Also the indicated mean effective pressure is improved by 3% by DI method as compared to PI in HCCI.
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