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Spray characteristics of pressure-swirl nozzles at different nozzle diameters

机译:不同喷嘴直径的压力 - 旋流喷嘴的喷涂特性

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摘要

The spray characteristics from a pressure-swirl nozzle, a widely used device in agriculture, combustion and aerospace, have been investigated in this study experimentally with focus on the effects of nozzle hole size and injection pressure on spray morphology, velocity distribution, and spray angle. Particle image velocimetry (PIV) is used to measure the velocity distribution of the fuel (jet-fuel No. 3) sprays generated by the nozzles with orifice diameter of 03 mm, 0.5 mm, and 0.8 mm at a fixed orifice length of 1.0 mm, under injection pressure ranging from 0.1 MPa to 2.0 MPa. It is found from this study that there exists a critical injection pressure of 1.5 MPa beyond which the spray angle becomes independent of pressure, meanwhile; the sprays from nozzle with an orifice length/diameter ratio of 2 have larger spray angles associated with higher velocities. From the data obtained by this study and Buckingham pi theorem, a correlation of the spray angle (theta) and Reynolds number (Re) has been developed, as Re = 1.4Re(0.39), where is defined by orifice diameter and exit velocity estimated by fuel mass flow rate and orifice area. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在实验上专注于喷嘴孔尺寸和喷射形态,速度分布和喷射角度的影响。粒子图像速度(PIV)用于测量由孔口直径为03mm,0.5mm,0.8mm的喷嘴产生的喷嘴产生的燃料(喷射燃料No.3)喷雾的速度分布,固定孔口长度为1.0mm ,在注射压力范围为0.1MPa至2.0MPa。从该研究中发现,超出了1.5MPa的临界注射压力,喷射角度与压力无关,同时;具有孔口长度/直径比的喷嘴的喷射具有较大的与速度相关的喷射角度。根据本研究和白金汉PI定理获得的数据,已经开发了喷射角(θ)和雷诺数(Re)的相关性,如Re = 1.4Re(0.39),在那里通过孔口直径和出口速度限定通过燃料质量流速和孔口区域。 (c)2017 Elsevier Ltd.保留所有权利。

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