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Modeling Nonaxisymmetric Bow Shocks: Solution Method and Exact Analytic Solutions

机译:非轴对称弓形激波建模:求解方法和精确解析解

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摘要

A new solution method is presented for steady-state, momentum-conserving, non-axisymmetric bow shocks and colliding winds in the thin-shell limit. This is a generalization of previous formulations to include a density gradient in the pre-shock ambient medium, as well as anisotropy in the pre-shock wind. For cases where the wind is unaccelerated, the formalism yields exact, analytic solutions. Solutions are presented for two bow shock cases: (1) that due to a star moving supersonically with respect to an ambient medium with a density gradient perpendicular to the stellar velocity, and (2) that due to a star with a misaligned, axisymmetric wind moving in a uniform medium. It is also shown under quite general circumstances that the total rate of energy thermalization in the bow shock is independent of the details of the wind asymmetry, including the orientation of the non-axisymmetric driving wind, provided the wind is non-accelerating and point-symmetric. A typical feature of the solutions is that the region near the standoff point is tilted, so that the star does not lie along the bisector of a parabolic fit to the standoff region. The principal use of this work is to infer the origin of bow shock asymmetries, whether due to the wind or ambient medium, or both.
机译:针对薄壳极限内的稳态,动量守恒,非轴对称弓形激波和碰撞风,提出了一种新的求解方法。这是对以前公式的概括,包括在震前环境介质中的密度梯度以及震前风中的各向异性。对于风不加速的情况,形式主义可得出精确的解析解。提出了两种弓形激波情况的解决方案:(1)由于恒星相对于密度垂直于恒星速度的密度相对于环境介质超音速运动,以及(2)由于恒星具有未对准的轴对称风在统一的介质中移动。在相当普遍的情况下,还表明,在弓形激波中,能量的总热化速率与风的不对称性无关,包括非轴对称行驶风的方向,前提是风不加速且指向不对称。对称的。解决方案的一个典型特征是,靠近支撑点的区域是倾斜的,因此恒星不会沿着与支撑区域的抛物线拟合的等分线分布。这项工作的主要用途是推断是否由于风或周围介质或两者而引起的弓形激波不对称的起源。

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  • 作者

    Wilkin, F P;

  • 作者单位
  • 年度 2000
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  • 原文格式 PDF
  • 正文语种 eng
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