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Using Background-Oriented Schlieren to Visualize Convection in a Propagating Wildland Fire

机译:使用背景面向的Schlieren在传播野火中可视化对流

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Heat and mass transfer are important processes associated with wildland fire. Both radiant and convective heat transfer are important processes with convection often being the dominant mechanism. Unlike radiation, there is no direct method of measuring convection. Since convective heat transfer is governed by the fluid flow, understanding the fluid flow provides good understanding on the convective heat transfer. In fluid mechanics, flow visualization is a common methodology used to understand flow characteristics. Schlieren imagery is a common flow visualization technique which captures changes in fluid density such as the ones occur around a fire. Background-Oriented Schlieren (BOS) is a flow visualization technique that uses a background image with various patterns to visualize the density gradient caused by density fluctuations in a fluid. We applied BOS to measure the flow associated with laboratory-scale line fires. The reproducible fires were spreading in pine needle fuel beds in a wind tunnel with and without imposed wind. This initial application of BOS in a fire environment successfully visualized the flow around the flame. The visualized flow underwent a secondary process to produce the velocity field of the flow. Results indicate that even in conditions where the fire is known to be dominated by radiation, wind carried the thermal plume ahead of the flame front and expanded the thermal plume. In contrast, in the no wind condition, the thermal plume remained vertical above the fire. Using the BOS imagery, a new model for estimation of convective heat transfer was introduced. In addition to estimation of the convective heat transfer ahead of the fire, this new model enables visualization of convective motion.
机译:热量和传质是与荒地火灾相关的重要过程。辐射和对流传热均为对流的重要过程,通常是主要机制。与辐射不同,没有直接测量对流的方法。由于对流热传递受流体流动的控制,因此了解流体流程对对流传热提供了良好的理解。在流体力学中,流动可视化是用于了解流动特性的常见方法。 Schlieren图像是一种常见的流动可视化技术,其捕获流体密度的变化,例如火灾周围发生。面向背景的Schlieren(BOS)是一种流动可视化技术,其使用具有各种图案的背景图像来可视化由流体中的密度波动引起的密度梯度。我们申请博斯测量与实验室尺度射线相关的流量。可重复的火灾在风隧道中的松针燃料床中蔓延,带有且没有施加的风。在火灾环境中的这种初步应用程序成功地可视化了火焰周围的流动。可视化流接受了次要过程以产生流程的速度场。结果表明,即使在已知火灾所在的条件下,风在火焰前面的火力上携带并膨胀热羽流。相比之下,在无风条件下,热羽流保持在火上方。使用BOS图像,引入了一种估计对流传热估计的新模型。除了估计火灾前面的对流传热之外,这种新模型还实现了对流运动的可视化。

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