Detailed characterizations of exhaust flow for a system of large-fire calorimeters

IF 3.4 3区 工程技术 Q2 ENGINEERING, CIVIL
Rodney A. Bryant, Artur A. Chernovsky
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引用次数: 0

Abstract

Accurate exhaust flow monitoring is critical to achieving accurate measurements of heat release rate during large-fire experiments. Detailed characterizations of exhaust flow for a large-fire research facility were conducted using procedures from standard test methods for determining average flow in exhaust ducts. The results characterize the distribution of near-axial velocity, flow angle, and gas temperature and provide data to evaluate the impact of the fire and off-axis flow on the flow distribution. Average velocity computed from the flow distributions serves as a reference measurement for verifying the accuracy of flow monitoring devices permanently installed for routine operations. Flow calibration results agree with previous results, completing the goal of verifying the accuracy of the routine flow measurement using independent methods. This effort has established a benchmark for the accuracy of the facility's exhaust flow measurement. It has also provided additional evidence that in-situ calibration of the flow monitoring devices used for large-fire calorimetry is best practice to improve measurement accuracy. In general, the results provide a useful example to large fire laboratories for characterizing and calibrating their exhaust flow measurements to ultimately improve the accuracy of their calorimetry measurements.
大型火焰量热计系统排气流量的详细描述
准确的排气流量监测是实现在大火实验中热量释放率的精确测量的关键。采用确定排气管道平均流量的标准测试方法,对大型火灾研究设施的排气流量进行了详细的表征。结果表征了近轴向速度、流动角和气体温度的分布,并为评估火流和离轴流对流动分布的影响提供了数据。根据流量分布计算出的平均流速可作为验证为日常操作而永久安装的流量监测装置的准确性的参考测量。流量校准结果与之前的结果一致,完成了使用独立方法验证常规流量测量准确性的目标。这项工作为该设施废气流量测量的准确性建立了一个基准。它还提供了额外的证据,证明用于大火量热法的流量监测装置的现场校准是提高测量精度的最佳实践。总的来说,这些结果为大型消防实验室提供了一个有用的例子,用于表征和校准其排气流量测量,以最终提高其量热测量的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Fire Safety Journal
Fire Safety Journal 工程技术-材料科学:综合
CiteScore
5.70
自引率
9.70%
发文量
153
审稿时长
60 days
期刊介绍: Fire Safety Journal is the leading publication dealing with all aspects of fire safety engineering. Its scope is purposefully wide, as it is deemed important to encourage papers from all sources within this multidisciplinary subject, thus providing a forum for its further development as a distinct engineering discipline. This is an essential step towards gaining a status equal to that enjoyed by the other engineering disciplines.
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