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From the Cover: Anomalously weak solar convection

机译:从封面:太阳对流异常弱

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摘要

Convection in the solar interior is thought to comprise structures on a spectrum of scales. This conclusion emerges from phenomenological studies and numerical simulations, though neither covers the proper range of dynamical parameters of solar convection. Here, we analyze observations of the wavefield in the solar photosphere using techniques of time-distance helioseismology to image flows in the solar interior. We downsample and synthesize 900 billion wavefield observations to produce 3 billion cross-correlations, which we average and fit, measuring 5 million wave travel times. Using these travel times, we deduce the underlying flow systems and study their statistics to bound convective velocity magnitudes in the solar interior, as a function of depth and spherical-harmonic degree ℓ. Within the wavenumber band ℓ < 60, convective velocities are 20–100 times weaker than current theoretical estimates. This constraint suggests the prevalence of a different paradigm of turbulence from that predicted by existing models, prompting the question: what mechanism transports the heat flux of a solar luminosity outwards? Advection is dominated by Coriolis forces for wavenumbers ℓ < 60, with Rossby numbers smaller than approximately 10-2 at r/R⊙ = 0.96, suggesting that the Sun may be a much faster rotator than previously thought, and that large-scale convection may be quasi-geostrophic. The fact that isorotation contours in the Sun are not coaligned with the axis of rotation suggests the presence of a latitudinal entropy gradient.
机译:人们认为,太阳内部的对流包括一系列尺度的结构。该结论来自现象学研究和数值模拟,尽管都没有涵盖太阳对流动力学参数的适当范围。在这里,我们使用时距螺旋地震学技术分析太阳光层中波场的观测结果,以成像太阳内部的流。我们对9000亿个波场观测值进行下采样和合成,以产生30亿个互相关,我们对它们进行了平均和拟合,测量了500万个波的传播时间。利用这些旅行时间,我们推论了潜在的流动系统,并研究了它们的统计数据,以作为深度和球谐度function的函数,限制了太阳内部对流速度的大小。在波数ℓ<60范围内,对流速度比当前理论估计值弱20-100倍。这种约束表明与现有模型所预测的湍流范式不同,从而引发了一个问题:哪种机制向外传播了太阳光度的热通量?对流是由科里奥利力控制的,波数为 60,Rossby数小于约10 -2 ,r /R⊙= 0.96,这表明太阳可能比以前认为的要快得多,而且大规模对流可能是准地转的。太阳的等旋转线轮廓与旋转轴不对齐的事实表明存在纬度熵梯度。

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