江苏大学汽车与交通工程学院,江苏,镇江,212013
网络首发:2020-03-10,
纸质出版:2020
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叶丽华 1, 刘天宇 1, 朱世林 1, 等. 生物柴油微观喷雾的灰色关联分析[J]. 西安交通大学学报, 2020,54(3):143-149.
Micro-Spraying Characteristics of Biodiesel Based on Grey Correlation Analysis[J]. 2020, 54(3): 143-149.
叶丽华 1, 刘天宇 1, 朱世林 1, 等. 生物柴油微观喷雾的灰色关联分析[J]. 西安交通大学学报, 2020,54(3):143-149. DOI: 10.7652/xjtuxb202003018.
Micro-Spraying Characteristics of Biodiesel Based on Grey Correlation Analysis[J]. 2020, 54(3): 143-149. DOI: 10.7652/xjtuxb202003018.
为探究影响生物柴油雾化性能的主次因素
对B100(棕榈油生物柴油)、N10(生物柴油的体积分数为90%
正丁醇的体积分数为10%)和N20(生物柴油的体积分数为80%
正丁醇的体积分数为20%)的雾化特性进行了试验研究。采用定容弹高速摄影与多普勒粒子分析仪测量系统研究了3种燃油在不同喷孔直径、喷油压力及背压下的微观雾化特性
分析了雾化油滴的轴向速度和索特平均直径D
SMD
的变化趋势
并在此基础上通过灰色关联理论
计算得到了正丁醇掺混比、喷孔直径、喷油压力及背压对生物柴油D
SMD
的影响程度。结果表明:随着正丁醇掺混比的增加
雾化油滴的轴向速度与D
SMD
都有所减小
B100的D
SMD
从轴向长度5 mm处的106.74 μm降低到轴向长度70 mm处的57.98 μm; 随喷孔直径和背压减小、喷射压力增大
3种生物柴油的D
SMD
均呈下降趋势
雾化质量得到改善。通过D
SMD
的灰色关联计算
得到正丁醇掺混比、喷孔直径、喷射压力和背压与D
SMD
之间的关联度分别为0.507 2、0.755 8、0.607 7和0.789 5
说明背压对D
SMD
的影响最大
喷孔直径与喷射压力次之
正丁醇掺混比对D
SMD
的影响最小。
To explore the primary and secondary factors affecting the atomi-ation performance of biodiesel
the micro-atomi-ation characteristics of B100(palm oil biodiesel)
N10(90% biodiesel plus 10% n-butanol in volume)andN20(80% biodiesel plus 20% n-butanol in volume)at different orifice diameters
injection pressures and back pressures were studied by high speed photography and phase Doppler particle analy-er(PDPA)measurement system. The axial velocity of the oil droplets and the variation trend of the Sauter mean diameter(D
SMD
)were analy-ed. Based on the grey correlation theory
the order of four influencing factors onD
SMD
of biodiesel was calculated. The results showed that theD
SMD
of B100 decreased from 106.74 -m at the axial length of 5 mm to 57.98 -m at the axial length of 70 mm; the axial velocity andD
SMD
of the oil droplet decreased with the percentage of n-butanol. With the increase of the injection pressure and the decrease of the back pr
NEJAD A S, ZAHEDI A R. Optimization of biodiesel production as a clean fuel for thermal power plants using renewable energy source [J]. Renewable Energy, 2018, 119: 365-374.
NONGBE M C, EKOU T, EKOU L, et al. Biodiesel production from palm oil using sulfonated graphene catalyst [J]. Renewable Energy, 2017, 106: 135-141.
MARDHIAH H H, ONG H C, MASJUKI H H, et al. A review on latest developments and future prospects of heterogeneous catalyst in biodiesel production from non-edible oils [J]. Renewable and Sustainable Energy Reviews, 2017, 67: 1225-1236.
RAJA N N. Analysis of performance and emission characteristics of diesel engine fuelled with different types of biodiesel: a review study [J]. International Journal of Engineering Sciences Research Technology, 2014, 3(5): 389-393.
HYUNKYU S, CHANGSIK L. A review on atomization and exhaust emissions of a biodiesel-fueled compression ignition engine [J]. Renewable and Sustainable Energy Reviews, 2016, 58: 1601-1620.
KALAM M A, MASJUKI H H. Biodiesel from palmoil: an analysis of its properties and potential [J]. Biomass Bioenergy, 2002, 23(6): 471-479.
HE B Q. Advances in emission characteristics of diesel engines using different biodiesel fuels [J]. Renewable and Sustainable Energy Reviews, 2016, 60: 570-586.
CHEIKH K, SARY A, KHALED L, et al. Experimental assessment of performance and emissions maps for biodiesel fueled compression ignition engine [J]. Applied Energy, 2016, 161: 320-329.
SUBRAMANIAN K A, LAHANE S. Comparative evaluations of injection and spray characteristics of a diesel engine using karanja biodiesel-diesel blends [J]. International Journal of Energy Research, 2013, 37(6): 582-597.
JIA T M, YU Y S, LI G X. Experimental investigation of effects of super high injection pressure on diesel spray and induced shock waves characteristics [J]. Experimental Thermal and Fluid Science, 2017, 85: 399-408.
杨康康, 李昕昕, 李俊鸽, 等. 醇类-生物柴油混合燃料喷雾特性的试验 [J]. 内燃机学报, 2016, 34(3): 260-267.
YANG Kangkang, LI Xinxin, LI Junge, et al. Experiment on spray characteristics of alcohol and biodiesel blends [J]. Transactions of CSICE, 2016, 34(3): 260-267.
周磊, 徐春龙, 韩君, 等. 柴油机高压及微孔径下燃油雾化特性的数值研究: Ⅰ 模型参数的选取 [J]. 车用发动机, 2011(5): 6-11.
ZHOU Lei, XU Chunlong, HAN Jun, et al. Numerical study on fuel spray characteristic for diesel engine under high pressure and micro-hole: Ⅰ Selection of model parameters [J]. Vehicle Engine, 2011(5): 6-11.
WANG Z, JIANG C, XU H, et al. Macroscopic and microscopic characterization of diesel spray under room temperature and low temperature with split injection [J]. Fuel Processing Technology, 2016, 142: 71-85.
郭恒杰, 李雁飞, 徐宏明, 等. 基于三维PDPA的旋流式GDI喷油器喷雾特性 [J]. 内燃机学报, 2015(4): 335-341.
GUO Hengjie, LI Yanfei, XU Hongming, et al. Spray characteristics of swirl-type GDI injector using 3D-PDPA [J]. Transactions of CSICE, 2015(4): 335-341.
DENG W, ZHANG X, WANG H, et al. Dispersion characteristics of biodiesel spray droplets in top-blown injection smelting process [J]. Chemical Engineering and Processing: Process Intensification, 2018, 126: 168-177.
叶丽华, 刘天宇, 施爱平. 适宜溶气量改善生物柴油/柴油混合燃油雾化质量 [J]. 农业工程学报, 2019, 35(6): 222-228.
YE Lihua, LIU Tianyu, SHI Aiping. Suitable dissolved gas improving atomization quality of biodiesel/diesel mixed fuel [J]. Transactions of the Chinese Society of Agricultural Engineering, 2019, 35(6): 222-228.
SUH H K, LEE C S. A review on atomization and exhaust emissions of a biodiesel-fueled compression ignition engine [J]. Renewable and Sustainable Energy Reviews, 2016, 58: 1601-1620.
CHEN S K, LEFEBVRE A H, ROLLBUHLER J. Influence of ambient air pressure on effervescent atomization [J]. Journal of Propulsion Power, 2015, 9(1): 10-15.
AGARWAL A K, DHAR A, GUPTA J G, et al. Effect of fuel injection pressure and injection timing on spray characteristics and particulate size-number distribution in a biodiesel fuelled common rail direct injection diesel engine [J]. Applied Energy, 2014, 130: 212-221.
ZHUANG Z, KUANG J, YONG X J, et al. Effect of liquid-phase pore diameters on atomization performance of spraying nozzles in MTP reactor [J]. Natural Gas Chemical Industry, 2016, 41(6): 78-83.
SHAN C, WEI Y, ZHANG Y, et al. Grey correlation degree analysis on main traits of soybean varieties in Heilongjiang Province [J]. Soybean Science, 2009, 28(5): 945-948.
WANG K, REN S, QIAN S, et al. Grey relational analysis of benefit of surgical management for abdominal aortic aneurysm [J]. International Surgery, 2014, 99(2): 189-194.
LIN S M. Associating DEA with grey relational analysis for performance assessment of management competencies in logistic industry [J]. Journal of Statistics and Management Systems, 2010, 13(5): 1117-1130.
COSKON H, PEKKAYA M. Determining of stock investments with grey relational analysis [J]. Expert Systems with Applications, 2011, 38(8): 9186-9195.
李闯. 基于无量纲化的缸盖结构参数多目标等权敏感性分析 [D]. 太原: 中北大学, 2017: 46-51.
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