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3D MODELING OF ACCRETION DISKS IN CLOSE BINARIES: THE PRECESSIONAL SPIRAL DENSITY WAVE

机译:近二进制中的吸收磁盘建模:模特螺旋密度波

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Three-dimensional numerical simulations of gas dynamics are used to study the flow pattern in a close binary system after it has reached the steady-state accretion regime. It is shown that an additional spiral density wave can exist in the inner parts of the cold accretion disk, where gas-dynamical perturbations are negligible. This spiral wave is due to the retrograde precession of the flowlines in the binary system. It is found that shape and position of a substantial part of the disk are specified by a precessional density wave. On timescales comparable to the orbital period, the precessional wave (and hence an appreciable fraction of the disk) will be virtually stationary in the observer's frame, whereas the positions of other elements of the flow will vary due to the orbital rotation. The periodic variations of the positions of the disk and the bow shock formed when the inner parts of the circumbinary envelope flow around the disk result in variations of both the rate of angular-momentum transfer to the disk and the flow structure near the Lagrange point L3. All these factors lead to a periodic increase of the matter flow into the outer layers of the circumbinary envelope through the vicinity of L_3.
机译:气体动力学的三维数值模拟用于在达到稳态增压状态后研究关闭二元系统中的流动模式。结果表明,冷加器盘的内部可以存在额外的螺旋密度波,其中气体动力学扰动可忽略不计。这种螺旋波是由于二元系统中流动线的逆行预防。发现磁盘的大部分的形状和位置由小型密度波指定。在与轨道周期相当的时间尺寸上,在观察者的框架中几乎静静地静静地静静地静静,而流动的其他元件的位置将由于轨道旋转而变化。当磁盘的内部部分围绕磁盘流动的内部部件形成磁盘的位置和弯曲冲击的周期性变化导致角动量转移到磁盘的速率和拉格朗日点L3附近的流动结构的变化。所有这些因素导致通过L_3附近的物质流入的物质流入的周期性增加。

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