论文标题

由于对流过弹和太阳建模问题而引起的局部供暖

Local heating due to convective overshooting and the solar modelling problem

论文作者

I, Baraffe, T, Constantino, J, Clarke, A, Le Saux, T, Goffrey, T, Guillet, J, Pratt, G, Vlaykov D.

论文摘要

对流模型中对流的最新流体动力学模拟表明,对流包络的边界的穿透性对流流改变了过冲层中的热背景。基于这些结果,我们在一维恒星演化中实现了一个简单的处方,以修改太阳模型对流边界以下的温度梯度。这种简单的处方定性地重现了流体动力学模拟中发现的行为,即对流边界以下温度梯度的局部加热和平滑。我们表明,在过冲层中引入局部加热可以减少太阳能模型之间通常报告的声速差异以及从Heliosesology推断的太阳结构之间。它还影响对流包膜中的关键数量,例如密度,熵和声音速度。这些效果可以帮助减少太阳模型之间的差异和基于Ledoux判别的地震反转的观察到的约束。由于由于过度弹药和局部加热而引起的混合是相同的对流穿透过程的结果,因此这项工作的目的是邀请太阳能建模者考虑这两个过程以进行更一致的方法。

Recent hydrodynamical simulations of convection in a solar-like model suggest that penetrative convective flows at the boundary of the convective envelope modify the thermal background in the overshooting layer. Based on these results, we implement in one-dimensional stellar evolution codes a simple prescription to modify the temperature gradient below the convective boundary of a solar model. This simple prescription qualitatively reproduces the behaviour found in the hydrodynamical simulations, namely a local heating and smoothing of the temperature gradient below the convective boundary. We show that introducing local heating in the overshooting layer can reduce the sound-speed discrepancy usually reported between solar models and the structure of the Sun inferred from helioseismology. It also affects key quantities in the convective envelope, such as the density, the entropy, and the speed of sound. These effects could help reduce the discrepancies between solar models and observed constraints based on seismic inversions of the Ledoux discriminant. Since mixing due to overshooting and local heating are the result of the same convective penetration process, the goal of this work is to invite solar modellers to consider both processes for a more consistent approach.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源