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Simulation of the Heat Transfer Mechanism of Flame Spread over Liquids

机译:对液体传播火焰传热机理的仿真

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Flame spread over liquids is of current interest because of its importance to fire safety and the curiosity of combustion researchers studying the fundamental heat transfer mechanism of this phenomenon. The major heat-transfer process between the flame's leading edge and the liquid is a highly transient phenomenon involving both liquid and gas phases. These interact with each other through the exchanges of momentum, heat, and mass. The liquid convection ahead of the flame is unique, complex and plays an important role in the spreading procexx. In our past studies we focused on obtaining accurate and detailed measurements of flow and temperature for both liquid and gas phases and fuel concentrations generated by the flame. To enhance our understanding of the heat-transfer mechanism, this paper focuses on simulating the liquid-convection flow experimentally by suddenly mixing two liquids each having different surfacetension properties. The first liquid simulated the heated liquid beneath the flame at high temperature and low surface tension. The second one simulated the unburned upstream liquid at room temperature and higher surface tension. Both liquids were mixed suddenly through the surface only. The velocity profiles were visualized experimentally suing the 2-D Laser-Sheet Particle-Tracking (LSPT) technique. The preliminary results showed that, if we can choose successfully the two liquids that match the properties of the liquids underneath and ahead of the flame, a good similarity between the velocity profiles of mixing of two liquids and of those from real flame spreading experiment can be obtained. As a result the liquid flow patterns ahead of the flame can be simulated accurately in order to apply the 3-D holographic imaging technique which is limited because of the distortion of the reference beam by temperature and density gradient, to better understand the mechanism of heat transfer ahead of the flame.
机译:由于其对消防安全性的重要性以及研究这种现象的基本传热机制的燃烧研究人员的重要性,火焰传播了目前的兴趣。火焰前缘和液体之间的主要传热过程是涉及液体和气相的高瞬态现象。这些通过动量,热量和质量的交换相互作用。火焰前提前的液体对流是独特的,复杂的并且在扩散Procexx中起着重要作用。在我们过去的研究中,我们专注于获得液体和气体阶段和由火焰产生的燃料级和燃料浓度的精确和详细测量。为了增强我们对传热机制的理解,本文侧重于通过突然混合两个具有不同表面积特性的液体来模拟液相对流流。第一液体在高温和低表面张力下模拟火焰下方的加热液体。第二个在室温和更高的表面张力下模拟未燃烧的上游液体。将两个液体突然通过表面混合。通过实验起到二维激光片粒子跟踪(LSPT)技术的实验性速率。初步结果表明,如果我们可以成功选择与在火焰下方的液体的性质匹配的两个液体,并且可以在两种液体和真正的火焰扩散实验中的那些之间的速度轮廓之间存在良好的相似性获得。结果,可以精确地模拟火焰前面的液体流动图案,以便施加3-D全息成像技术,因为通过温度和密度梯度的参考光束的变形是受限的限制,以更好地理解热量在火焰前转移。

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