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ON NUMERICAL CONSIDERATIONS FOR MODELING REACTIVE ASTROPHYSICAL SHOCKS

机译:活性天体震荡建模的数值考虑

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Simulating detonations in astrophysical environments is often complicated by numerical approximations to shock structure. A common prescription to ensure correct detonation speeds and associated quantities is to prohibit burning inside the numerically broadened shock. We have performed a series of simulations to verify the efficacy of this approximation and to understand how resolution and dimensionality might affect its use. Our results show that in one dimension, prohibiting burning in the shock is important wherever the carbon burning length is not resolved, in keeping with the results of Fryxell et al. In two dimensions, we find that the prohibition of shock burning effectively inhibits the development of cellular structure for all but the most highly resolved cases. We discuss the possible impacts this outcome may have on sub-grid models and detonation propagation in models of Type?Ia supernovae, including potential impacts on observables.
机译:在天体环境中模拟爆炸通常会因冲击结构的数值近似而变得复杂。确保正确的起爆速度和相关数量的常用方法是禁止在数字上扩大的冲击内燃烧。我们进行了一系列模拟,以验证这种近似的有效性,并了解分辨率和尺寸如何影响其使用。我们的结果表明,与Fryxell等人的结果一致,在一个维度上,无论碳的燃烧长度没有解决,禁止在冲击中燃烧都是很重要的。在两个方面,我们发现,除最高度解决的情况外,禁止电击燃烧有效地抑制了细胞结构的发展。我们讨论了该结果可能对亚网格Ia型超新星模型中的子网格模型和爆轰传播产生的可能影响,包括对可观测物体的潜在影响。

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