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首页> 外文期刊>Applied optics >Phase-Doppler interferometry with probe-to-droplet size ratios less than unity. I. Trajectory Errors
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Phase-Doppler interferometry with probe-to-droplet size ratios less than unity. I. Trajectory Errors

机译:探针与液滴尺寸比小于1的相位多普勒干涉仪。 I.轨迹误差

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摘要

Phase-Doppler interferometry in which a probe volume that is much smaller than the droplets being measured has been shown to work well when coupled with a phase-ratio and intensity-validation scheme that is capable of eliminating trajectory-dependent scattering errors. With ray-tracing and geometricoptics models, the type and magnitude of trajectory errors were demonstrated quantitatively through stochastic trajectory calculations. Measurements with monodispersed water droplet streams and glass beads were performed to validate the model calculations and to characterize the probe volume. Scattered-light intensity has also been shown to provide a robust means of determining the probe cross-sectional area, which is critical for making accurate mass flux measurements.
机译:相位多普勒干涉测量法(其中的探头体积远小于所测量的液滴)已被证明可以很好地与相比和强度验证方案配合使用,该方案能够消除与轨迹有关的散射误差。使用射线跟踪和几何光学模型,通过随机轨迹计算定量地证明了轨迹误差的类型和大小。用单分散的水滴流和玻璃珠进行测量,以验证模型计算并表征探针体积。还显示出散射光强度可提供确定探针横截面积的可靠方法,这对于进行精确的质量通量测量至关重要。

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