相变材料(PCM)对柴油机减排的建模与仿真

Amare Tesfaw Addis, O. Fatoba, T. Jen
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引用次数: 0

摘要

在实际应用中,对柴油发动机再强调也不为过,但也要注意其排放的缺点。这些排放物以硫氧化物、温室气体、一氧化碳、颗粒物和氮氧化物的形式出现。光化学烟雾的形成归因于氮氧化物,它增加了羟基自由基浓度和对流层臭氧。其他排放物,如硫氧化物,会导致硫酸的形成,也会对人体呼吸器官产生不利影响。一氧化碳是有毒的,会导致人体血液中的氧气堵塞,导致死亡。本研究旨在通过文献综述和计算流体动力学建模与仿真的实验工作,通过改进和优化相变材料减排方法来减少氮氧化物的排放。本研究探讨柴油燃烧排放对环境的影响。评估包括文献研究、相变材料的数值模拟和燃烧分析系统软件分析,以及与添加相变材料的燃烧结果进行比较。比较包括发动机性能和减排百分比(%)。因此,通过在排气口气缸盖附近引入石蜡,氮氧化物排放量减少了45%。这项研究将加强研究人员的实验工作,通过微小的修改发动机机体,以减少热氮氧化物。
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Modelling and Simulation of Emission Reduction of Diesel Engine by Phase Change Materials (PCM)
In practical application, diesel engines cannot be overemphasized but the drawback of emissions needs to be taken care of. These emissions come in form of sulphur oxides, greenhouse gas, carbon monoxide, particulate matter and nitrogen oxides. Photochemical smog formation is attributed to nitrogen oxides which increases hydroxyl-radical concentrations and tropospheric ozone. The other emissions like sulphuric oxides lead to the formation of sulphuric acid which also leads to adverse effects on human respiratory organ. Carbon monoxide is toxic and can lead to blockage of oxygen in human blood and lead to death. This research is aimed at reducing nitrogen oxides emissions by enhancing and optimizing emission reduction method using phase change materials via experimental work in the literature review and computational fluid dynamic modelling and simulation. This study looks into the environmental impact of diesel emission from fuel combustion. The evaluation consists of a literature study, numerical modeling and simulations of phase change materials with analysis of system software in combustion analysis and comparing the result of combustion with adding the phase change materials. The comparison consists of engine performance, and emission reduction in percent (%). Hence, by introducing the paraffin wax near to the cylinder head of the exhaust port, nitrogen oxide emission was reduced by 45 %. This study would enhance experimental work by researchers by minute modification of the engine block in order to reduce thermal nitrogen oxides.
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