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首页> 外文期刊>The Astrophysical journal >The Thermal Regulation of Gravitational Instabilities in Protoplanetary Disks. III. Simulations with Radiative Cooling and Realistic Opacities
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The Thermal Regulation of Gravitational Instabilities in Protoplanetary Disks. III. Simulations with Radiative Cooling and Realistic Opacities

机译:原行星盘引力不稳定性的热调节。三,辐射冷却和不透明的模拟

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This paper presents a fully three-dimensional radiative hydrodymanics simulation with realistic opacities for a gravitationally unstable 0.07 M☉ disk around a 0.5 M☉ star. We address the following aspects of disk evolution: the strength of gravitational instabilities under realistic cooling, mass transport in the disk that arises from GIs, comparisons between the gravitational and Reynolds stresses measured in the disk and those expected in an α-disk, and comparisons between the SED derived for the disk and SEDs derived from observationally determined parameters. The mass transport in this disk is dominated by global modes, and the cooling times are too long to permit fragmentation for all radii. Moreover, our results suggest a plausible explanation for the FU Ori outburst phenomenon.
机译:本文提出了一个完整的三维辐射流体动力学模拟,它对0.5M☉恒星周围的重力不稳定的0.07M☉圆盘具有现实的混浊。我们讨论了磁盘演化的以下方面:实际冷却下的重力不稳定性强度,由GI引起的磁盘质量传输,在磁盘中测得的重力和雷诺应力与在α磁盘中预期的应力之间的比较以及比较在磁盘导出的SED和从观测确定的参数导出的SED之间。该磁盘中的质量传输受全局模式支配,并且冷却时间太长,无法对所有半径进行破碎。此外,我们的结果为FU Ori爆发现象提供了合理的解释。

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