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用于三维流动测量的高保真数字同轴全息方法。

High fidelity digital inline holographic method for 3D flow measurements.

作者信息

Toloui Mostafa, Hong Jiarong

出版信息

Opt Express. 2015 Oct 19;23(21):27159-73. doi: 10.1364/OE.23.027159.

Abstract

Among all the 3D optical flow diagnostic techniques, digital inline holographic particle tracking velocimetry (DIH-PTV) provides the highest spatial resolution with low cost, simple and compact optical setups. Despite these advantages, DIH-PTV suffers from major limitations including poor longitudinal resolution, human intervention (i.e. requirement for manually determined tuning parameters during tracer field reconstruction and extraction), limited tracer concentration, and expensive computations. These limitations prevent this technique from being widely used for high resolution 3D flow measurements. In this study, we present a novel holographic particle extraction method with the goal of overcoming all the major limitations of DIH-PTV. The proposed method consists of multiple steps involving 3D deconvolution, automatic signal-to-noise ratio enhancement and thresholding, and inverse iterative particle extraction. The entire method is implemented using GPU-based algorithm to increase the computational speed significantly. Validated with synthetic particle holograms, the proposed method can achieve particle extraction rate above 95% with fake particles less than 3% and maximum position error below 1.6 particle diameter for holograms with particle concentration above 3000 particles/mm. The applicability of the proposed method for DIH-PTV has been further validated using the experiment of laminar flow in a microchannel and the synthetic tracer flow fields generated using a DNS turbulent channel flow database. Such improvements will substantially enhance the implementation of DIH-PTV for 3D flow measurements and enable the potential commercialization of this technique.

摘要

在所有三维光流诊断技术中,数字同轴全息粒子跟踪测速法(DIH-PTV)以低成本、简单紧凑的光学装置提供了最高的空间分辨率。尽管有这些优点,但DIH-PTV存在重大局限性,包括纵向分辨率差、人工干预(即在示踪剂场重建和提取过程中需要手动确定调谐参数)、示踪剂浓度有限以及计算成本高。这些限制使得该技术无法广泛用于高分辨率三维流测量。在本研究中,我们提出了一种新颖的全息粒子提取方法,旨在克服DIH-PTV的所有主要局限性。所提出的方法包括多个步骤,涉及三维去卷积、自动信噪比增强和阈值处理以及逆迭代粒子提取。整个方法使用基于GPU的算法实现,以显著提高计算速度。通过合成粒子全息图验证,对于粒子浓度高于3000个粒子/毫米的全息图,所提出的方法可以实现高于95%的粒子提取率,假粒子少于3%,最大位置误差低于1.6个粒子直径。使用微通道层流实验和使用DNS湍流通道流数据库生成的合成示踪剂流场,进一步验证了所提出的方法对DIH-PTV的适用性。这些改进将大大增强DIH-PTV在三维流测量中的应用,并使该技术具有潜在的商业化前景。

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