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首页> 外文期刊>Astronomy reports >Variations in the Solar Luminosity, Radius, and Quadrupole Moment as Effects of a Large-Scale Dynamo in the Solar Convection Zone
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Variations in the Solar Luminosity, Radius, and Quadrupole Moment as Effects of a Large-Scale Dynamo in the Solar Convection Zone

机译:太阳光度,半径和四极矩的变化作为太阳对流区大型发电机的影响

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The effect of large-scale magnetic fields generated by the solar dynamo on the irradiance of the Sun and stratification of the solar convection zone is studied using a numerical model of a spherical axisymmetric dynamo. This model provides a joint description of the generation of large-scale magnetic fields, differential rotation, and convective heat transfer taking into account energy transformations associated with the large-scale magnetic fields, as well as the stratification of the convection zone. The model further develops a previously suggested self-consistent approach to analyzing solar luminosity variations, based on the conservation of the energy of the large-scale magnetic fields and turbulent flows. The results indicate that the increase in the solar luminosity near the maximum of the cycle is mainly due to the dissipation of the energy of magnetic fields escaping to above the photosphere, with the partial conversion of this energy into radiation. In addition, near-photospheric magnetic fields strongly affect the latitudinal nonuniformity of the cyclic variations in the radiative flux. The large-scale magnetic field also influences the hydrostatic equilibrium of the convection zone and gives rise to 11-year variations in the sound speed with a relative amplitude of 10–3. The cyclic magnetic activity generates oscillations in the quadrupole moment with an amplitude of 4.5 * 10~(–9)(GM_⊙/R_⊙). According to our estimates, the variations in the solar radius are very small, ~10~(–6) R_⊙. Our numerical model is used to estimate the variations in the orbital periods of close binaries whose primaries have the same spectral class as the Sun. Modulation of the centrifugal force by torsional oscillations can provide a plausible explanation for variations in the orbital periods of the companion stars in these systems
机译:利用球形轴对称发电机的数值模型研究了太阳发电机产生的大范围磁场对太阳辐照度和太阳对流区分层的影响。该模型结合了与大范围磁场相关的能量转换以及对流区的分层,共同描述了大范围磁场的产生,旋转差和对流传热。该模型进一步发展了先前提出的自洽方法,该方法基于对大范围磁场和湍流能量的守恒来分析太阳光度变化。结果表明,太阳光亮度的增加接近周期的最大值,这主要是由于逸出到光球上方的磁场能量的耗散所致,其中部分能量转化为辐射。另外,近光球磁场强烈影响辐射通量周期性变化的纬度不均匀性。大范围的磁场还会影响对流区的静水平衡,并导致声速出现11年的变化,相对幅度为10-3。循环磁活动在四极矩中产生振幅为4.5 * 10〜(–9)(GM_⊙/R_⊙)的振荡。根据我们的估计,太阳半径的变化很小,约为10〜(–6)R_⊙。我们的数值模型用于估算接近双星的轨道周期的变化,这些双星的原色与太阳具有相同的光谱类别。扭转振动对离心力的调制可以为这些系统中伴星的轨道周期变化提供合理的解释

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