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Experimental Investigations of Flow Field and Atomization Field Characteristics of Pre-Filming Air-Blast Atomizers

机译:预拍摄空气喷射雾化器的流场和雾化场特性的实验研究

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摘要

Flow field, atomization field characteristics, and liquid film breakup behaviors of a pre-filming air-blast atomizer are investigated using PIV (Particle Imaging Velocimetry), PLIF (Fuel Planar Laser Induced Fluorescence), and high-speed shadowgraph technique under different air mass rates (ma), fuel mass rates (mf), and fuel temperatures (T). The influence of structures constituting the pre-filming air-blast atomizer on the flow field organization and atomization field organization are investigated too. The results illustrate that air-blast atomizer structures have a great difference on the flow fields and atomization fields. Air-blast atomizer structures have great differences on the liquid film breakup processes too. Flow field structure and atomization structure are mainly determined by the swirler structure, whereas there are seldom influences of air mass rate and fuel mass rate on them. The results of the mechanisms of flow field organization and atomization field organization in this study can be used to support the design of new low-emission combustor.
机译:使用PIV(颗粒成像速度),PLIF(燃料平面激光诱导荧光)和高速影子图技术研究了预拍摄风爆雾化器的雾化场特性和液体膜分解行为,以及不同空气质量的高速影子技术速率(MA),燃料质量率(MF)和燃料温度(T)。研究了构成预拍摄预拍摄空气喷雾剂对流场组织和雾化场组织的影响。结果说明了风电雾化器结构对流场和雾化领域具有很大差异。风吹雾化器结构也对液体膜分离过程具有很大的差异。流场结构和雾化结构主要由旋流器结构确定,而气体质量率很少影响它们。本研究中流场组织和雾化现场组织机制的结果可用于支持新的低排放燃烧器的设计。

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