首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >ATTENUATION OF NON-PHYSICAL OSCILLATIONS IN SUPERNOVA SHOCK WAVES
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ATTENUATION OF NON-PHYSICAL OSCILLATIONS IN SUPERNOVA SHOCK WAVES

机译:超新星激波中非物理振荡的衰减

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Artificial viscosity is widely used in numerical calculations of stellar core collapse. The failure or success of the prompt mechanism explosion of type-II supernovae is strongly dependent on the numerical code, and the study of a suitable and efficient method of capturing the shock front is a current problem. We present a novel one-term artificial viscosity which is dependent on the velocity field along the shock front. We show that this form of artificial viscosity is able to capture the profile of a plane shock wave, removing the non-physical oscillations originated by the artificial viscosity of von Neumann and Richtmyer type.
机译:人造粘度被广泛用于恒星核心坍塌的数值计算。 II型超新星快速机制爆炸的成败与否在很大程度上取决于数字代码,因此,研究一种合适,有效的捕获激波锋的方法是当前的问题。我们提出了一种新颖的一期人工黏度,该黏度取决于沿激波前沿的速度场。我们表明,这种形式的人工粘度能够捕获平面激波的轮廓,从而消除由冯·诺伊曼和里奇米尔类型的人工粘度引起的非物理振荡。

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