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首页> 外文期刊>Astronomy and astrophysics >Meridional motions and Reynolds stress from SDO/AIA coronal bright points data
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Meridional motions and Reynolds stress from SDO/AIA coronal bright points data

机译:SDO / AIA冠状亮点数据的子午运动和雷诺应力

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Context. It is possible to detect and track coronal bright points (CBPs) in Solar Dynamics Observatory/Atmospheric Imaging Assembly (SDO/AIA) images. A combination of high resolution and high cadence provides a wealth of data that can be used to determine velocity flows on the solar surface with very high accuracy. Aims. We derived a very accurate solar rotation profile and investigated meridional flows, torsional oscillations, and horizontal Reynolds stress based on ≈ 6 months of SDO/AIA data. Methods. We used a segmentation algorithm to detect CBPs in SDO/AIA images. We also used invariance of the solar rotation profile with central meridian distance (CMD) to determine the height of CBPs in the 19.3 nm channel. Results. The best fit solar rotation profile is given by ω ( b ) = (14.4060 ± 0.0051 + (?1.662 ± 0.050)sin~(2) b + (?2.742 ± 0.081)sin~(4) b ) ° day ~(-1) . The height of CBPs in the SDO/AIA 19.3 nm channel was found to be ≈ 6500 km. Meridional motion is predominantly poleward for all latitudes, while solar velocity residuals show signs of torsional oscillations. Horizontal Reynolds stress was found to be smaller than in similar works, but still showed transfer of angular momentum towards the solar equator. Conclusions. Most of the results are consistent with Doppler measurements rather than tracer measurements. The fairly small calculated value of horizontal Reynolds stress might be due to the particular phase of the solar cycle. Accuracy of the calculated rotation profile indicates that it is possible to measure changes in the profile as the solar cycle evolves. Analysis of further SDO/AIA CBP data will also provide a better understanding of the temporal behaviour of the rotation velocity residuals, meridional motions, and Reynolds stress.
机译:上下文。可以在太阳动力学天文台/大气成像组件(SDO / AIA)图像中检测和跟踪日冕亮点(CBP)。高分辨率和高节奏的结合提供了大量数据,这些数据可用于非常高精度地确定太阳表面上的速度流。目的我们基于大约6个月的SDO / AIA数据得出了非常准确的太阳旋转剖面图,并研究了子午流,扭转振荡和水平雷诺应力。方法。我们使用分割算法来检测SDO / AIA图像中的CBP。我们还使用太阳旋转剖面与中心子午线距离(CMD)的不变性来确定19.3 nm通道中CBP的高度。结果。最佳拟合太阳旋转曲线由ω(b)=(14.4060±0.0051 +(?1.662±0.050)sin〜(2)b +(?2.742±0.081)sin〜(4)b)°天〜(- 1)。发现在SDO / AIA 19.3 nm通道中CBP的高度约为≈6500 km。在所有纬度上,子午线运动主要是向极运动的,而太阳速度残差则显示出扭转振荡的迹象。人们发现水平雷诺应力小于类似的工作,但是仍然显示出角动量向太阳赤道的转移。结论。大多数结果与多普勒测量而不是示踪剂测量一致。水平雷诺应力的计算值相当小,可能是由于太阳周期的特定阶段造成的。计算得出的旋转轮廓的准确性表明,可以测量随着太阳周期的发展而变化的轮廓。对其他SDO / AIA CBP数据的分析还将提供对旋转速度残差,子午运动和雷诺应力的时间行为的更好理解。

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