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陶瓷涂层活塞顶、废气再循环、压缩比和发动机负荷对与热分析相比的木棉油-柴油混合燃料运行的柴油机性能和排放特性的影响。

The influence of ceramic-coated piston crown, exhaust gas recirculation, compression ratio and engine load on the performance and emission behavior of kapok oil-diesel blend operated diesel engine in comparison with thermal analysis.

机构信息

Department of Mechanical Engineering, Dr. N.G.P. Institute of Technology, Coimbatore, Tamilnadu, 640148, India.

Department of Mechanical Engineering, Dr. Mahalingam College of Engineering and Technology, Pollachi, Tamilnadu, 642003, India.

出版信息

Environ Sci Pollut Res Int. 2019 Aug;26(24):24772-24794. doi: 10.1007/s11356-019-05678-x. Epub 2019 Jun 25.

Abstract

In this work, the development and usability of kapok oil in diesel engine was intended. With this purpose, the piston crowns are coated with mullite-lanthanum (ML) ceramic composite at varying compositions in order to reduce the heat rejection during combustion process. The kapok oil is blended with diesel fuel consisting of (20% kapok oil-80% diesel) volumetrically named B fuel. The B and diesel (D) fuels are taken for the engine performance test with different coated piston (ML1, ML2, and ML3) and exhaust gas recirculation (EGR-10%, 20%, and 30%), compression ratio (CR-16, 17, and 18) and engine load (50%, 75%, and 100%). Also, the engine performance study on brake thermal efficiency (BTE), brake-specific fuel consumption (BSFC), hydrocarbons (HCs), oxides of nitrogen (NOx), carbon monoxide (CO), smoke opacity, and numerical study using ANSYS software is carried out. When operated with ML2-coated pistons with B fuel, maximum BTE value of 29.2%, minimum BSFC value of 0.224 kg/kW-h, CO emission of 0.2%, and smoke opacity of 39 ppm were observed. The results showed that ML2-coated piston considerably improved the performance of the test engines when compared with ML1 and ML3 coatings. Except for NOx emission, all other pollutant emission values were reduced. The numerical analysis using ANSYS software for ML2-coated pistons showed better retention of in-cylinder chamber temperature.

摘要

本工作旨在研究并评估在柴油机中使用木棉油的可行性。为此,我们在活塞顶表面涂覆了不同配比的莫来石-镧(ML)陶瓷复合材料,以减少燃烧过程中的热损失。木棉油与柴油(D)按一定比例混合,得到 B 燃料(木棉油 20%,柴油 80%)。研究了不同涂层的活塞(ML1、ML2 和 ML3)、废气再循环(EGR-10%、20%和 30%)、压缩比(CR-16、17 和 18)和发动机负荷(50%、75%和 100%)对 B 燃料和柴油燃料(D)的发动机性能的影响。此外,还使用 ANSYS 软件进行了发动机制动热效率(BTE)、比燃料消耗(BSFC)、碳氢化合物(HCs)、氮氧化物(NOx)、一氧化碳(CO)、烟度和数值研究。结果表明,与 ML1 和 ML3 涂层相比,使用 ML2 涂层的活塞在使用 B 燃料时,可获得最大的 29.2%的 BTE 值、最小的 0.224kg/kW-h 的 BSFC 值、0.2%的 CO 排放和 39ppm 的烟度。除了 NOx 排放外,其他污染物的排放值都有所降低。使用 ANSYS 软件对 ML2 涂层的活塞进行数值分析表明,该涂层能够更好地保持缸内温度。

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