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Study Of Pool Fire Heat Release Rate Using Video Fire Detection

机译:使用视频火灾检测池火热释放率的研究

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To provide fire safety for high performance buildings, various types of fire/smoke detection systems are developed. Video fire detection is one of the important aspects in the development of fire detection system. It is particularly useful in large spaces with high headroom and buildings with cross ventilation design where traditional spot type smoke detection methods may not be effective. For the development of video fire detection system, spatial, spectral and temporal parameters are used to identify the fire source. One of the parameters captured by the video fire detection system is the flame height. With the information of flame height, real time heat release rate of fire can be estimated which is a very important parameter in determining the smoke generation rate and fire severity. Such information is very important in assisting evacuation and smoke control. In this study, experiments of pool fires with different pool diameters of 100mm, 200mm, 300mm and 400mm are conducted in the fire chamber of the laboratory in Department of Building Services Engineering, The Hong Kong Polytechnic University. The flame images, room temperatures and mass loss rates of the fuel are measured. The flame images are segmented using multi - threshold algorithm in a modified Otsu method and Rayleigh distribution analysis (modified segmentation algorithm). The algorithm use the optimum threshold values calculated to extract the pool fire images from a video sequence. After segmentation, flame height information can be obtained. In addition, other flame characteristics are also used for recognizing the flame region including flame color, flame light intensity, flame shape, and flicker frequency. Once the flame height is identified by the system, the heat release rate can be estimated using the equation developed by McCaffrey. The calculated heat release rates are then compared with measured heat release rate data. The results show that using flame height image for estimating real time heat release rate is promising.
机译:为高性能建筑提供消防安全,开发了各种类型的火灾/烟雾检测系统。视频火灾检测是火灾探测系统开发的重要方面之一。它在大型空间中特别有用,高净空和建筑物,交叉通风设计,传统的现场烟雾检测方法可能没有有效。为了开发视频火灾检测系统,使用空间,光谱和时间参数来识别消防源。由视频火灾检测系统捕获的参数之一是火焰高度。随着火焰高度的信息,可以估计实时热释放速率,这是确定烟雾产生速率和火灾严重程度的一个非常重要的参数。这些信息在协助疏散和烟雾控制方面非常重要。在这项研究中,在香港理工大学建筑服务工程系的实验室的火灾室中,池火灾的实验,具有100mm,200mm,300mm和400mm的火灾室进行。测量火焰图像,室温和燃料的质量损失率。在修改的OTSU方法和Rayleigh分布分析中使用多阈值算法(修改分割算法),将火焰图像分段。该算法使用计算的最佳阈值来从视频序列中提取池火图像。在分割之后,可以获得火焰高度信息。另外,其他火焰特性还用于识别包括火焰颜色,火焰光强度,火焰形状和闪烁频率的火焰区域。一旦通过系统识别火焰高度,可以使用由McCaffrey开发的等式估计热释放率。然后将计算的热释放速率与测量的热释放速率数据进行比较。结果表明,使用火焰高度图像来估计实时热释放率是有前途的。

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