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Comparative Experimental Study on Microscopic Spray Characteristics of RME, GTL and Diesel

机译:RME,GTL和柴油微观喷射特性的比较实验研究

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In this paper, the microscopic spray characteristics of diesel, Rapeseed Methyl Ester (RME) and Gas-to-Liquid (GTL) fuel, were studied at different injection pressures and measuring positions using Phase Doppler Anemometry (PDA) technique and the velocity development and size distributions of the fuel droplets were analyzed in order to understand spray atomization process. The injection pressures ranged from 80 MPa to 150 MPa, and the measuring position varied from 20 mm to 70 mm downstream the nozzle. It was found that the data rate is quite low in the near nozzle region and at high injection pressure. Sauter Mean Diameter (SMD) of all fuels obviously decreases when the injection pressure increases from 80 MPa to 120 MPa; but the injection pressure has little promotion on the axial velocity of droplets. The SMD decreases with increasing axial distance from the nozzle from 40 mm to 70 mm downstream the nozzle for the given fuels at the injection pressure of 120 MPa while relatively stable at 80 MPa injection pressure. Moreover, the droplet velocity development of GTL and RME exhibits a similar tendency, compared with that of diesel at given injection pressure. GTL has the smallest SMD, compared with diesel and RME at the given test condition. For RME and diesel, SMD does not show obvious difference at 80 MPa injection pressure. However, diesel obtained a smaller SMD when injection pressure was increased to 120 MPa.
机译:本文在不同的注射压力和测量位置研究了柴油,油菜籽甲酯(RME)和燃料 - 液(GTL)燃料的微观喷射特性,使用相位多普勒式经济体(PDA)技术和速度开发和速度开发分析了燃料液滴的尺寸分布,以便理解喷雾雾化过程。注射压力范围为80MPa至150MPa,测量位置在喷嘴下游20mm至70mm。发现近喷嘴区域和高注射压力的数据速率非常低。当注射压力从80MPa增加到120 MPa时,所有燃料的叶片平均直径(SMD)明显降低;但注射压力几乎没有促进液滴的轴向速度。 SMD减小随着喷嘴从下游的轴向距离增加到10mm至70mm的喷嘴,用于在120MPa的注射压力下的给定燃料,而在80MPa注射压力下相对稳定。此外,与给定注射压力的柴油相比,GTL和RME的液滴速度显现出类似的趋势。 GTL具有最小的SMD,与柴油和RME相比给定的测试条件。对于RME和柴油,SMD在80MPa注射压力下没有显示出明显的差异。然而,当注射压力增加到120MPa时,柴油获得了较小的SMD。

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