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Estimating Thermal Radiation Fields From 3d Flame Reconstruction

机译:从3d火焰重建估算热辐射场

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摘要

The dominant mechanism for the spread of a fire in a building is radiative heat, transfer from flames. Therefore, in order to understand how a fire might develop it is necessary to determine the thermal radiation field surrounding a fire. The heat flux at any target location depends upon the flame's emissive power and the shape factor between the flame's surface and the target. To determine the shape factor, it is necessary to define the geometry of the flame surface, and develop a method for obtaining the shape factor for that geometry. In this article we describe a method for determining the flame geometry using image-processing techniques. Images of the fire are recorded using two cameras and the flame is reconstructed in three dimensions. Once the surface of the flame has been defined it is possible to calculate the shape factor at a given target. Using the shape factor and an estimate of the emissive power of the flame, the heat flux at the target can be determined. Repeating this process for multiple targets' builds a thermal radiation field. Results from applying the method to a controlled flame produced by a diffusion burner show a high correlation between estimated and measured heat flux values.
机译:建筑物中火势蔓延的主要机制是辐射热,它是由火焰传递的。因此,为了理解火势如何发展,有必要确定火势周围的热辐射场。在任何目标位置的热通量取决于火焰的发射功率以及火焰表面与目标之间的形状因数。为了确定形状因数,必须定义火焰表面的几何形状,并开发一种获得该几何形状的形状因数的方法。在本文中,我们描述了一种使用图像处理技术确定火焰几何形状的方法。使用两台摄像机记录火的图像,并在三个维度上重建火焰。一旦定义了火焰表面,就可以计算给定目标的形状因数。使用形状因子和火焰发射功率的估计值,可以确定目标处的热通量。对多个目标重复此过程将建立一个热辐射场。将本方法应用于扩散燃烧器产生的受控火焰的结果表明,估算的和测量的热通量值之间具有高度相关性。

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