Willi Joseph, Madrzykowski Daniel, McKinnon Mark, Dow Nicholas
UL Fire Safety Research Institute, 6200 Old Dobbin Lane, Suite # 150, MD 21045, Columbia.
Data Brief. 2023 Jan 24;47:108934. doi: 10.1016/j.dib.2023.108934. eCollection 2023 Apr.
There exists a variety of specialized fire dynamics routines, zone fire models, and field fire models. Many of these heuristics and correlations rely on experimental data from fires fueled by gas burners or liquid pool fires and have had minimal, if any, validation against data from fires with solid, more complex fuels, such as upholstered furniture. One hundred and twenty fire experiments were conducted inside a compartment that contained a single ventilation opening in the form of a doorway that was either open or closed for the entirety of each experiment. The fires were fueled by natural gas burners and upholstered furniture items. The compartment was instrumented throughout with thermocouples, oxygen sampling probes, heat flux gauges (total and radiative), pressure transducers, and bi-directional probes. Additionally, heat release rate data were collected during open door experiments with fires larger than 100 kW. This experimental series was designed to better quantify the repeatability of and differences between natural gas burner and upholstered furniture fuels and to provide new validation cases for the fire modeling community.
存在多种专门的火灾动力学程序、区域火灾模型和场火灾模型。这些启发式方法和相关性中的许多都依赖于由燃气燃烧器或液体池火引发的火灾的实验数据,并且针对使用固体、更复杂燃料(如软垫家具)的火灾数据进行的验证极少(如果有的话)。在一个隔间内进行了120次火灾实验,该隔间有一个呈门口形式的单一通风口,在每次实验的整个过程中通风口要么打开要么关闭。火灾由天然气燃烧器和软垫家具引发。隔间内各处都安装了热电偶、氧气采样探头、热通量计(总热通量和辐射热通量)、压力传感器和双向探头。此外,在开门实验中,对于大于100千瓦的火灾收集了热释放率数据。这个实验系列旨在更好地量化天然气燃烧器和软垫家具燃料之间的重复性和差异,并为火灾建模界提供新的验证案例。