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TPCI: the PLUTO-CLOUDY Interface - A versatile coupled photoionization hydrodynamics code

机译:TPCI:PLUTO-CLOUDY接口-通用的耦合光电离流体力学代码

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We present an interface between the (magneto-) hydrodynamics code PLUTO and the plasma simulation and spectral synthesis code CLOUDY. By combining these codes, we constructed a new photoionization hydrodynamics solver: the PLUTO-CLOUDY Interface (TPCI), which is well suited to simulate photoevaporative flows under strong irradiation. The code includes the electromagnetic spectrum from X-rays to the radio range and solves the photoionization and chemical network of the 30 lightest elements. TPCI follows an iterative numerical scheme: first, the equilibrium state of the medium is solved for a given radiation field by CLOUDY, resulting in a net radiative heating or cooling. In the second step, the latter influences the (magneto-) hydrodynamic evolution calculated by PLUTO. Here, we validated the one-dimensional version of the code on the basis of four test problems: photoevaporation of a cool hydrogen cloud, cooling of coronal plasma, formation of a Str?mgren sphere, and the evaporating atmosphere of a hot Jupiter. This combination of an equilibrium photoionization solver with a general MHD code provides an advanced simulation tool applicable to a variety of astrophysical problems.
机译:我们提出了(磁)流体力学代码PLUTO与等离子体模拟和频谱合成代码CLOUDY之间的接口。通过组合这些代码,我们构建了一个新的光电离流体动力学求解器:PLUTO-CLOUDY接口(TPCI),非常适合模拟强辐射下的光蒸发流。该代码包括从X射线到无线电范围的电磁光谱,并解决了30种最轻元素的光电离和化学网络。 TPCI遵循一个迭代的数值方案:首先,CLOUDY对给定的辐射场求解介质的平衡状态,从而导致净辐射加热或冷却。在第二步中,后者会影响PLUTO计算的(磁)流体动力学演化。在此,我们基于四个测试问题验证了该代码的一维版本:冷却的氢云的光蒸发,日冕等离子体的冷却,Str?mgren球的形成以及热的木星的蒸发气氛。平衡光电离解算器与通用MHD代码的这种组合提供了适用于各种天体物理问题的高级仿真工具。

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