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The effect of Newtonian cooling on vertically propagating magneto-acoustic waves in a thermally conducting isothermal atmosphere (II)

机译:牛顿冷却对导热等温气氛中垂直传播的磁声波的影响(II)

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摘要

In this article, we examine reflection, dissipation and attenuation of vertically propagating waves in an isothermal atmosphere under the combined effect of Newtonian cooling, thermal conduction and viscosity with a weak horizontal magnetic field. We consider the case in which the combined effect of viscosity and magnetic field is dominated by that of the thermal conduction and for small values of the Newtonian parameter. As a result, the atmosphere can be divided into three distinct regions that are connected by two transition regions. The lower and middle regions are connected by a semi-transparent barrier and the middle and upper regions are connected by an absorbing and reflecting barrier. In the connecting barriers the reflection and transmission of the waves takes place. The presence of Newtonian cooling effects on the adiabatic region, produces attenuation in the amplitudes of the waves and reduces the energy absorption in the transition regions. The reflection coefficient is determined in the lower and middle regions and the results are discussed in the context of the heating of the solar atmosphere.
机译:在本文中,我们研究了在牛顿冷却,热传导和黏度与弱水平磁场共同作用下,等温大气中垂直传播波的反射,耗散和衰减。我们考虑的情况是,粘度和磁场的综合作用主要由热传导的影响决定,并且牛顿参数的值较小。结果,可以将大气分为通过两个过渡区域连接的三个不同的区域。下部和中间区域通过半透明屏障连接,而上部和中间区域通过吸收和反射屏障连接。在连接屏障中,发生了波的反射和透射。在绝热区域上存在牛顿冷却效应,在波幅上产生衰减,并减少过渡区域中的能量吸收。在下部和中部区域确定反射系数,并在加热太阳大气的情况下讨论结果。

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