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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >THE ENGINE OF OUTFLOWS IN AGN: THE ROLE OF PHYSICAL TURBULENT VISCOSITY
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THE ENGINE OF OUTFLOWS IN AGN: THE ROLE OF PHYSICAL TURBULENT VISCOSITY

机译:AGN中的流出引擎:湍流粘度的作用

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Adopting the smoothed particle hydrodynamics (SPH) numerical method, we performed a grid of evolving models of a 3D, axially symmetric, physically viscous accretion disc around a black hole (BH) in an AGN. In such disc models, the role of the specific angular momentum lambda and of the physical turbulent viscosity parameter alpha, according to the Shakura and Sunyaev prescription, are examined. One or two shock fronts develop in the radial inviscid flow, according to the assigned initial kinematic and thermodynamic conditions. Couples of (alpha, lambda) values determine radial periodical oscillations in the shock front. An outflow can develop from the subsonic post shock region, close to the black hole, in some cases. This provides evidence for a link between the accretion disc and the fueling of a jet, through the presence of shock fronts in an accretion disc close to the centrifugal barrier.
机译:采用平滑粒子流体动力学(SPH)数值方法,我们对AGN中黑洞(BH)周围的3D,轴向对称,物理粘性吸积盘进行了演化模型的网格。在这样的圆盘模型中,根据Shakura和Sunyaev的处方,研究了比角动量λ和物理湍流粘度参数α的作用。根据分配的初始运动学和热力学条件,在径向无粘性流中会形成一个或两个冲击前沿。几对(alpha,lambda)值确定了激波前沿的径向周期性振荡。在某些情况下,可能会从靠近黑洞的亚音速震荡后区域流出。通过在靠近离心屏障的吸积盘中存在激波锋,这为吸积盘与喷射燃料之间的联系提供了证据。

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