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SDO/HMI observations of the average supergranule are not compatible with separable flow models

机译:平均超颗粒的SDO / HMI观测值与可分流模型不兼容

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摘要

Aims. Despite extensive studies carried out since its discovery half a century ago, the nature of supergranulation remains an open question in solar physics. Separability of flow models is a common assumption made in the literature to shed light on the properties of supergranules. This paper studies the ability of separable mass-conserving flow models to reproduce photospheric observations from the Helioseismic Magnetic Imager (HMI) on board of the Solar Dynamics Observatory (SDO) spacecraft corresponding to an average supergranule. Methods. For a steady mass-conserving separable flow model to be compatible with the observations, there is an integral relation between the horizontal and vertical components of the flow. We test this relation directly on observations and compare the results with the proportionality relationship for a separable model. Results. Observations of an average supergranule do not satisfy the condition for separability. Selecting a narrower range of horizontal scales of supergranules when performing the average does not change this result. Separable models are not consistent with observations of an average supergranule.
机译:目的尽管自半个世纪以来就进行了广泛的研究,但超级颗粒的性质仍然是太阳物理学中的一个悬而未决的问题。流动模型的可分离性是文献中为阐明超微粒子的性质而普遍提出的假设。本文研究了可分离的质量守恒流模型从太阳动力学天文台(SDO)航天器上对应于平均超级颗粒的太阳地震磁成像仪(HMI)再现光球观测结果的能力。方法。为了使稳定的质量守恒可分离流动模型与观测结果兼容,流动的水平分量和垂直分量之间存在积分关系。我们直接在观测值上测试此关系,并将结果与​​可分离模型的比例关系进行比较。结果。平均超颗粒的观察结果不满足可分离性的条件。在执行平均时,选择较窄的超颗粒水平刻度范围不会更改此结果。可分离的模型与平均超颗粒的观察结果不一致。

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