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首页> 外文期刊>The Astrophysical journal >Solar Convection: Comparison of Numerical Simulations and Mixing-Length Theory
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Solar Convection: Comparison of Numerical Simulations and Mixing-Length Theory

机译:太阳对流:数值模拟和混合长度理论的比较

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摘要

We compare the results of realistic numerical simulations of convection in the superadiabatic layer near the solar surface with the predictions of mixing-length theory. We find that the peak values of such quantities as the temperature gradient, the temperature fluctuations, and the velocity fluctuations, as well as the entropy jump in the simulation, can be reproduced by mixing- length theory for a ratio of mixing length to pressure scale height α≈1.5. However, local mixing- length theory neither reproduces the profiles of these variables with depth nor allows penetration of convective motions into the overlying stable photosphere.
机译:我们将太阳表面附近超绝热层对流的现实数值模拟结果与混合长度理论的预测结果进行了比较。我们发现,在模拟中,温度梯度,温度波动和速度波动以及熵跳等量的峰值可以通过混合长度理论以混合长度与压力比例之比的形式再现高度α≈1.5。然而,局部混合长度理论既没有再现这些变量随深度的分布,也不允许对流运动渗透到上覆的稳定光圈中。

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