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首页> 外文期刊>Applied optics >Phase boundary detection in transient, evaporating high-pressure fuel sprays by rainbow schlieren deflectometry
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Phase boundary detection in transient, evaporating high-pressure fuel sprays by rainbow schlieren deflectometry

机译:瞬态相位边界检测,通过彩虹Schlieren偏转测量蒸发高压燃料喷雾剂

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摘要

The rainbow schlieren deflectometry (RSD) technique is used to simultaneously identify the liquid and vapor boundaries during transient evolution of evaporating high-pressure fuel sprays. Traditionally, liquid and vapor phases require separate diagnostics, whereas this work relies upon a single technique to identify each phase, in addition to the previously demonstrated capability of RSD to measure local fuel-air mixing in the vapor zone. The proposed RSD methodology is a significant improvement over a previously published technique, i.e., it is applicable to the transient period, and much less data and hence, computational effort, is required. Experiments are conducted in a constant pressure flow rig for multiple fuels and test conditions to demonstrate the capability of the proposed RSD diagnostic. For each test condition, multiple injections are performed in quick succession to obtain statistically significant data sets to depict the spray evolution at a spatial resolution of 100 mu m, a camera framing rate up to 40 kHz, and an exposure time down to 1 mu s. The method and the results are compared and discussed within the context of prior work using RSD, Mie-scattering, and Siebers' liquid length scaling law. (C) 2019 Optical Society of America
机译:彩虹Schlieren偏转测量(RSD)技术用于同时识别蒸发高压燃料喷雾的瞬态演化期间的液体和蒸汽边界。传统上,液体和蒸气阶段需要单独的诊断,而这种工作依赖于单一技术来识别每个阶段,除了先前显示RSD的能力,以测量蒸汽区中的局部燃料 - 空气混合。所提出的RSD方法是通过先前发表的技术的显着改进,即,适用于瞬态期,并且需要更少的数据,因此需要计算努力。实验在恒定压力流动管中进行,用于多种燃料和测试条件,以证明所提出的RSD诊断的能力。对于每个测试条件,在快速连续中进行多次喷射以获得统计上有效的数据集,以将100μm的空间分辨率描绘出来的喷雾演化,相机框架率高达40 kHz,并且曝光时间下降到1μs 。比较方法和结果,并在使用RSD,MIE散射和SIEGERS的液体长度缩放法的上下文中进行比较和讨论。 (c)2019年光学学会

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