首页> 外文期刊>The Astrophysical journal >LOW MACH NUMBER MODELING OF CONVECTION IN HELIUM SHELLS ON SUB-CHANDRASEKHAR WHITE DWARFS. II. BULK PROPERTIES OF SIMPLE MODELS
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LOW MACH NUMBER MODELING OF CONVECTION IN HELIUM SHELLS ON SUB-CHANDRASEKHAR WHITE DWARFS. II. BULK PROPERTIES OF SIMPLE MODELS

机译:副猪舍藻类白矮星氦壳中对流的低Mach数模拟。二。简单模型的本体属性

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The dynamics of helium shell convection driven by nuclear burning establish the conditions for runaway in the sub-Chandrasekhar-mass, double-detonation model for SNe Ia, as well as for a variety of other explosive phenomena. We explore these convection dynamics for a range of white dwarf core and helium shell masses in three dimensions using the low Mach number hydrodynamics code MAESTRO. We present calculations of the bulk properties of this evolution, including time-series evolution of global diagnostics, lateral averages of the 3D state, and the global 3D state. We find a variety of outcomes, including quasi-equilibrium, localized runaway, and convective runaway. Our results suggest that the double-detonation progenitor model is promising and that 3D dynamic convection plays a key role.
机译:由核燃烧驱动的氦壳对流动力学为亚纳-钱德拉塞卡尔质量,SNe Ia的双爆轰模型以及各种其他爆炸现象的失控创造了条件。我们使用低马赫数流体动力学代码MAESTRO在三个维度上探索了一系列白矮星核和氦壳质量的对流动力学。我们介绍了这种演化的整体性质的计算,包括全局诊断的时间序列演化,3D状态的横向平均值和全局3D状态。我们发现各种结果,包括准平衡,局部失控和对流失控。我们的结果表明,双爆轰祖模型是有前途的,并且3D动态对流起着关键作用。

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