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Numerical Analysis of Heat Loss Effects on the Smoldering Combustion of a Thin Solid in a Narrow Channel

机译:窄通道中薄固体闷热燃烧的热损失效应的数值分析

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Oxygen tends to be deficient in a narrow space or in a microgravity environment where natural convection is suppressed. When a combustible solid is burned in such an environment, smoldering combustion without flame occurs. Since smoldering combustion is often observed in the initial stage of a fire, insights into smoldering combustion help understand fire growth behaviors at an early stage of a fire. This paper presents a numerical model of the smoldering combustion of a thin solid in a narrow channel. The smoldering spread rate and the fingering pattern formed by a instability mechanism are particularly studied. It is found that heat loss has a significant influence on the smoldering behavior. With an increase in heat loss, instability tends to be enhanced, leading to more frequent fingertip splits and local extinction.
机译:氧气倾向于缺乏狭窄的空间或微沉降环境中抑制自然对流的微沉降环境。 当可燃固体在这种环境中燃烧时,发生无火焰的闷烧燃烧。 由于在火的初始阶段通常观察到闷烧燃烧,因此闷烧燃烧的见解有助于了解火灾早期的火灾生长行为。 本文呈现了狭窄通道中薄固体的闷燃燃烧的数值模型。 特别研究了通过不稳定机构形成的闷燃的扩散速率和指向图案。 发现热损失对闷烧行为产生了重大影响。 随着热损失的增加,易升性趋于增强,导致更频繁的指尖分裂和局部灭绝。

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