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Quantifying Air Movement Induced by Natural Forces in an Isolated Structure in the Subsurface Infrastructure

机译:在地下基础设施中孤立结构中的自然力量诱导的空气运动

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This article describes the development and demonstration of a non-intrusive method for the quantitative determination of speed of air movement along the ground and inside an isolated subsurface structure, a type of confined space. Natural ventilation occurs continuously and reduces risk to entrants from contact with a hazardous atmosphere. One of the most important parameters still undetermined was the speed of air movement during the process. Small puffs of artificial “smoke” were used to visualize air movement. Tracker, an open-source physics program, provided the capability to analyze this movement. Measurement of air speed requires access to individual frames in the video, capability to move forward and backward, and the means to manipulate the image to highlight the “smoke”. Background subtraction, control of brightness and contrast, and conversion of color to greyscale were essential for obtaining these measurements. Measurements for a single opening indicated that flow along the ground was borderline turbulent (Reynolds number ~3000) and in the opening and inside the airspace, within the bounds of laminar flow (Reynolds number <2250). Video obtained during this work showed behavior observable in laboratory studies of Helmholtz resonators. Results provide the basis for a larger study of the ventilation process to facilitate design improvements.
机译:本文介绍了一种非侵入性方法的开发和演示,用于定量确定沿地面的空气运动速度的速度,并且在隔离的地下结构中,一种受限空间的类型。自然通风持续发生,并降低与危险气氛接触的进入剂的风险。仍然未确定的最重要的参数之一是该过程中的空气运动速度。人工“烟雾”的小斗争用于可视化空气运动。跟踪器,一个开源物理程序,提供了分析此运动的能力。空气速度的测量需要访问视频中的各个帧,能够向前和向后移动,以及操纵图像以突出显示“烟雾”的手段。背景减法,控制亮度和对比度,以及颜色转换为灰度,对于获得这些测量是必不可少的。单个开口的测量表明,沿地面的流动是边界湍流(雷诺数〜3000),并且在空间中的开口和内侧,在层流(Reynolds Number <2250)的范围内。在此工作期间获得的视频显示在Helmholtz谐振器的实验室研究中可观察到的行为。结果为促进设计改进的较大研究提供了较大研究的基础。

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