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A smoke detector activation algorithm for large eddy simulation fire modeling

机译:用于大涡模拟火灾建模的烟雾探测器激活算法

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This study chronicles the development and integration of a smoke detector activation algorithm (known as the SDAA) that describes the response time of a smoke detector into a large eddy simulation (LES) fire model [Roby RJ, Olenick SM, Zhang W, Carpenter DJ, Klassen MS, Torero JL. Smoke detector activation algorithm version 1 technical reference guide. NISTIR Report; 2006, in press]. Although the SDAA could be used with any CFD smoke movement model, the results here address specifically its application to the fire dynamics simulator (FDS). The fire model predicts the smoke concentration and velocity adjacent to the detector while an algorithm based on characteristic velocity-based lag times describes the transport of smoke into the sensing chamber of the smoke detector. The experimental data from a multi-room compartment fire were used for comparison and a series of benchmark studies provide a mechanism to establish the sensitivity of the model to the different input parameters. The SDAA was found to be very accurate in determining detector activation times for both high- and low-velocity smoke flows.
机译:这项研究记录了烟雾探测器激活算法(称为SDAA)的开发和集成,该算法将烟雾探测器的响应时间描述为大型涡流仿真(LES)火灾模型[Roby RJ,Olenick SM,Zhang W,Carpenter DJ ,克拉森(Klassen)女士,托雷罗(Torero)烟雾探测器激活算法版本1技术参考指南。 NISTIR报告; 2006年,印刷中]。尽管SDAA可以与任何CFD烟雾运动模型一起使用,但此处的结果专门解决了其在火灾动态模拟器(FDS)中的应用。火灾模型预测邻近探测器的烟雾浓度和速度,而基于特征速度的滞后时间的算法描述了烟雾向烟雾探测器感应室的传输。来自多房间隔室火灾的实验数据用于比较,一系列基准研究提供了一种建立模型对不同输入参数的敏感性的机制。发现SDAA对于确定高速和低速烟雾流的检测器激活时间非常准确。

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