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首页> 外文期刊>IEEE sensors journal >Liquid Water Content and Droplet Sizing Shadowgraph Measuring System for Wind Turbine Icing Detection
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Liquid Water Content and Droplet Sizing Shadowgraph Measuring System for Wind Turbine Icing Detection

机译:风力涡轮机结冰检测中的液态水含量和液滴尺寸阴影图测量系统

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摘要

This paper shows that the liquid water content (LWC) and the median volume diameter (MVD) can be derived from the images of water droplets using a shadowgraph imaging system with incoherent LED illumination. Icing on structures, such as a wind turbine, is the result of a combination of LWC and MVD, and other parameters, such as temperature, humidity, and wind speed. Today, LWC and MVD are not commonly measured for wind turbines. Systems for measuring these properties are often expensive or impractical in terms of location or remote reading. The aim of this paper is to gain knowledge about how to design a single instrument based on imaging that has the ability to measure these properties with enough precision and accuracy to detect icing conditions for wind turbines. A method to calculate both the LWC and the MVD from the same images is described in this paper. The size of one droplet is determined by measuring the shadow created by the droplet in background illumination. The concentration is calculated by counting the measured droplets and estimating the volumes in which these droplets can be observed. In this paper, the observation volume is shown to be dependent on the particle size and the signal-to-noise ratio for each measured particle. An expected coefficient of variation of the LWC depending on the droplet size is shown to be 2.4% for droplets 10 in diameter and 1.6% for 25- droplets. This is based on an error estimation of the laboratory measurements calibrated using a micrometer dot scale.
机译:本文表明,使用带非相干LED照明的阴影图成像系统,可以从水滴图像中得出液态水含量(LWC)和中位体积直径(MVD)。 LWC和MVD以及其他参数(例如温度,湿度和风速)结合的结果是在结构(例如风力涡轮机)上结冰。如今,对于风力涡轮机,通常不测量LWC和MVD。就位置或远程读取而言,用于测量这些属性的系统通常很昂贵或不切实际。本文的目的是获得有关如何设计基于成像的单个仪器的知识,该仪器具有足够的精度和精度来测量这些特性以检测风力涡轮机的结冰状况。本文介绍了一种从同一图像计算LWC和MVD的方法。一个小滴的大小是通过在背景照明下测量由小滴产生的阴影来确定的。通过对测得的液滴进行计数并估算可以观察到这些液滴的体积来计算浓度。在本文中,观察到的体积显示为取决于颗粒尺寸和每个被测颗粒的信噪比。 LWC取决于液滴尺寸的预期变化系数显示为直径10的液滴为2.4%,25液滴的为1.6%。这是基于对使用千分尺刻度尺校准的实验室测量值的误差估计。

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