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首页> 外文期刊>Journal of the air & waste management association >An uncertainty analysis of mean flow velocity measurements used to quantify emissions from stationary sources
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An uncertainty analysis of mean flow velocity measurements used to quantify emissions from stationary sources

机译:用于量化固定源排放物的平均流速测量值的不确定性分析

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Point velocity measurements conducted by traversing a Pitot tube across the cross section of a flow conduit continue to be the standard practice for evaluating the accuracy of continuous flow-monitoring devices. Such velocity traverses were conducted in the exhaust duct of a reduced-scale analog of a stationary source, and mean flow velocity was computed using several common integration techniques. Sources of random and systematic measurement uncertainty were identified and applied in the uncertainty analysis. When applicable, the minimum requirements of the standard test methods were used to estimate measurement uncertainty due to random sources. Estimates of the systematic measurement uncertainty due to discretized measurements of the asymmetric flow field were determined by simulating point velocity traverse measurements in a flow distribution generated using computational fluid dynamics. For the evaluated flow system, estimates of relative expanded uncertainty for the mean flow velocity ranged from ±1.4% to ±9.3% and depended on the number of measurement locations and the method of integration. Implications: Accurate flow measurements in smokestacks are critical for quantifying the levels of greenhouse gas emissions from fossil-fuel-burning power plants, the largest emitters of carbon dioxide. A systematic uncertainty analysis is necessary to evaluate the accuracy of these measurements. This study demonstrates such an analysis and its application to identify specific measurement components and procedures needing focused attention to improve the accuracy of mean flow velocity measurements in smokestacks.
机译:通过在流动导管的横截面上横穿皮托管进行点速度测量一直是评估连续流量监控装置精度的标准做法。在固定比例源的缩小比例模拟的排气管中进行此类速度遍历,并使用几种常见的积分技术计算平均流速。确定了随机和系统测量不确定度的来源,并将其应用于不确定度分析。适用时,使用标准测试方法的最低要求来估算由于随机来源而引起的测量不确定度。通过模拟使用计算流体动力学生成的流量分布中的点速度遍历测量,可以确定由于不对称流场的离散测量而导致的系统测量不确定性的估计。对于评估的流量系统,平均流速的相对扩展不确定度的估计范围为±1.4%至±9.3%,并取决于测量位置的数量和积分方法。含义:烟囱中的精确流量测量对于量化化石燃料发电厂(最大的二氧化碳排放者)的温室气体排放水平至关重要。要评估这些测量的准确性,必须进行系统的不确定性分析。这项研究表明了这种分析及其在确定需要特别注意以提高烟囱中平均流速测量精度的特定测量组件和程序方面的应用。

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    National Institute of Standards and Technology, Gaithersburg, MD, USA, 100 Bureau Drive, MS8665, Gaithersburg, MD 20899, USA;

    National Institute of Standards and Technology, Gaithersburg, MD, USA;

    National Institute of Standards and Technology, Gaithersburg, MD, USA;

    National Institute of Standards and Technology, Gaithersburg, MD, USA;

    National Institute of Standards and Technology, Gaithersburg, MD, USA;

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