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首页> 外文期刊>The Astrophysical journal >THE RESPONSE OF MODEL AND ASTROPHYSICAL THERMONUCLEAR FLAMES TO CURVATURE AND STRETCH
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THE RESPONSE OF MODEL AND ASTROPHYSICAL THERMONUCLEAR FLAMES TO CURVATURE AND STRETCH

机译:模型和天体热核火焰对弯曲和拉伸的响应

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摘要

Critically understanding the standard candle-like behavior of Type Ia supernovae requires understanding their explosion mechanism. One family of models for Type Ia supernovae begins with a deflagration in a carbon-oxygen white dwarf that greatly accelerates through wrinkling and flame instabilities. While the planar speed and behavior of astrophysically relevant flames is increasingly well understood, more complex behavior, such as the flame's response to stretch and curvature, has not been extensively explored in the astro-physical literature; this behavior can greatly enhance or suppress instabilities and local flame-wrinkling, which in turn can increase or decrease the bulk burning rate. In this paper, we explore the effects of curvature on both nuclear flames and simpler model flames to understand the effect of curvature on the flame structure and speed.
机译:批判性地了解Ia型超新星的标准蜡烛状行为需要了解其爆炸机理。 Ia型超新星的一个模型家族首先是在碳氧白矮星中爆燃,该爆燃通过起皱和火焰不稳定而大大加速。尽管天文学相关火焰的平面速度和行为得到了越来越多的了解,但在天体物理学文献中尚未广泛探索更复杂的行为,例如火焰对伸展和弯曲的响应。这种行为可以大大增强或抑制不稳定性和局部起皱纹,从而增加或降低整体燃烧速率。在本文中,我们探索了曲率对核火焰和较简单模型火焰的影响,以了解曲率对火焰结构和速度的影响。

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