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首页> 外文期刊>The Astrophysical journal >METAL DEPENDENCES OF TWO CONVECTION THEORIES FOR COOL STELLAR ENVELOPES
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METAL DEPENDENCES OF TWO CONVECTION THEORIES FOR COOL STELLAR ENVELOPES

机译:冷却恒星包络的两种对流理论的金属依赖性

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Most theories of turbulent convection in stellar envelopes assume incompressible flow, and so require the assignment of a characteristic length scale from external evidence. In mixing-length theory, this length l is usually assigned to be a constant, α, times the local pressure scale height, H_P, or, alternatively, times the distance from the top of the convection zone, z. The new full-spectrum-of-turbulence theory of Canuto & Mazzitelli uses l = z, and therefore is formally parameter-free. Chieffi, Straniero, & Salaris have recently suggested that α in mixing-length theory depends on metallicity, Z, but they considered only low-mass stars. We do a similar analysis for stars of higher mass. Specifically, we compare predicted and observed effective temperatures of red giants and red supergiants of widely differing metallicities, but identical luminosities, within the mass range 5-10 solar mass. The stars utilized belong to several open clusters in the Galaxy with Z ≈ 0.02 and to the clusters NGC 330 and NGC 458 in the Small Magellanic Cloud with Z = 0.002-0.004. It appears that either α in mixing-length theory is independent of metallicity or, since the empirical effective temperatures of the SMC stars may have been underestimated, α increases slightly with decreasing metallicity. On the other hand, Canuto & Mazzitelli's theory with l = z is found to perform quite well in all cases, within the possible errors of the observations and of the low-temperature opacities.
机译:恒星包壳中的大多数湍流对流理论都假定流动是不可压缩的,因此需要从外部证据中确定特征长度尺度。在混合长度理论中,通常将长度l分配为常数α,乘以局部压力标高H_P,或者乘以距对流区顶部的距离z。 Canuto&Mazzitelli提出的新的全光谱湍流理论使用l = z,因此在形式上没有参数。 Chieffi,Straniero和Salaris最近提出,混合长度理论中的α取决于金属性Z,但他们只考虑了低质量恒星。我们对质量较高的恒星进行了类似的分析。具体来说,我们比较了在质量范围5-10太阳质量内,金属性差异很大但光度相同的红色巨人和红色超巨人的预测和观察到的有效温度。所利用的恒星属于银河系中Z≈0.02的几个开放星团,以及小麦哲伦星云中Z = 0.002-0.004的星团NGC 330和NGC 458。似乎是混合长度理论中的α与金属性无关,或者由于SMC星的经验有效温度可能被低估了,所以α随着金属性的降低而略有增加。另一方面,发现Canuto&Mazzitelli的l = z理论在所有情况下均表现良好,而且观测值和低温不透明度可能存在误差。

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