首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Validation of a CFD Model by Using 3D Sonic Anemometers to Analyse the Air Velocity Generated by an Air-Assisted Sprayer Equipped with Two Axial Fans
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Validation of a CFD Model by Using 3D Sonic Anemometers to Analyse the Air Velocity Generated by an Air-Assisted Sprayer Equipped with Two Axial Fans

机译:通过使用3D声波风速计分析配备有两个轴流风扇的空气辅助喷雾器产生的风速来验证CFD模型

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摘要

A computational fluid dynamics (CFD) model of the air flow generated by an air-assisted sprayer equipped with two axial fans was developed and validated by practical experiments in the laboratory. The CFD model was developed by considering the total air flow supplied by the sprayer fan to be the main parameter, rather than the outlet air velocity. The model was developed for three air flows corresponding to three fan blade settings and assuming that the sprayer is stationary. Actual measurements of the air velocity near the sprayer were taken using 3D sonic anemometers. The workspace sprayer was divided into three sections, and the air velocity was measured in each section on both sides of the machine at a horizontal distance of 1.5, 2.5, and 3.5 m from the machine, and at heights of 1, 2, 3, and 4 m above the ground The coefficient of determination (R2) between the simulated and measured values was 0.859, which demonstrates a good correlation between the simulated and measured data. Considering the overall data, the air velocity values produced by the CFD model were not significantly different from the measured values.
机译:开发了由配备有两个轴流风扇的空气辅助喷雾器产生的气流的计算流体动力学(CFD)模型,并通过实验室中的实际实验进行了验证。 CFD模型是通过将喷雾器风扇提供的总气流作为主要参数而不是出口空气速度作为主要参数而开发的。该模型是针对对应于三个风扇叶片设置的三种气流而开发的,并假设喷涂机是固定的。使用3D声波风速计对喷涂机附近的空气速度进行实际测量。工作区喷雾器分为三部分,分别在距机器1.5、2.5和3.5 m的水平距离以及高度1、2、3,距地面4 m处模拟值与测量值之间的确定系数(R 2 )为0.859,表明模拟值与测量值之间具有良好的相关性。考虑到整体数据,CFD模型产生的空气速度值与测量值没有显着差异。

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