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A Numerical Study of Gravity Effects on Spontaneous Ignition

机译:对自发点火重力影响的数值研究

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A numerical study on a spontaneous gas-phase ignition over horizontally placed, thermally thin solid fuel initiated by external radiative heating under various levels of ambient oxygen concentration and gravity was made in order to understand those effects on the ignition behavior. The ambient oxygen concentration Y_(ox,infinity) was varied from 0 to 1, and the gravity was from the zero to normal gravity. Atmosphere was quiescent initially, and the solid fuel was started to be exposed to the heating at t=0 s. As the solid fuel was heated up to around 650K of the pyrolysis temperature, the decomposed volatiles, including the combustible component, were evolved from the surface, and were mixed with the ambient oxygen to form the combustible, leading to the spontaneous ignition in the gas-phase. The ignition behavior depends on the oxygen concentration, as well as on the gravity level. Two types of the ignition were observed. When the oxygen concentration is high enough, the ignition occurs at the tip of the plume of the evolved volatiles, whereas the ignition occurs inside the plume when the oxygen concentration is lower. It was found that the natural convection induced by buoyancy contributes to inhibit the ignition by removing the heat from the possible ignition region rather than to enhance the ignition by promoting the mixing of the evolved products with the ambient oxygen. It was also found that in general the ignition delay time (=t_(ig)) was increased as the gravity is increased.
机译:通过水平放置的自发气相点火的数值研究,进行了在各种环境氧浓度和重力下由外部辐射加热引发的热薄固体燃料,以了解对点火行为的影响。环境氧浓度Y_(OX,无穷大)从0到1变化,并且重力从零到正常重力。最初的气氛是静止的,并且在T = 0 s时开始将固体燃料暴露于加热。当固体燃料加热至大约650K的热解温度时,分解的挥发物,包括可燃组分,从表面中蒸发,并与环境氧气混合以形成可燃物,导致气体中的自发点火。 -阶段。点火行为取决于氧浓度,以及重力水平。观察到两种点火。当氧浓度足够高时,在进化挥发物的羽流的尖端发生点火,而当氧浓度较低时,点火发生在羽毛内。发现浮力引起的自然对流通过从可能的点火区域中除去热量而不是通过促进进化的产品与环境氧气的混合来抑制点火来抑制点火。还发现,通常,随着重力增加,通常增加点火延迟时间(= T_(Ig))。

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