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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Evaluation of the turbulent energy cascade rates from the upper inertial range in the solar wind at 1 AU
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Evaluation of the turbulent energy cascade rates from the upper inertial range in the solar wind at 1 AU

机译:评估的湍流能量级联率从上面的惯性在太阳风范围at 1日

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摘要

We construct a database from ACE spacecraft measurements of solar wind magnetic field fluctuations at 1 AU which resolves ~2 decades in frequency at the high end of the inertial range. Using magnetic field measurements outside of magnetic clouds in combination with plasma measurements, we evaluate expressions for the Kolmogorov and Kraichnan cascade rates at 0.01 Hz from magnetic field power spectra and consider both isotropic and cross-field rates. We examine these rates as functions of proton temperature and solar wind speed, comparing them to the expected rate based on the heating of protons at 1 AU. The average Kolmogorov rate is consistently more than a factor of 10 greater than expected. We conclude that the cascade rate cannot be estimated using the Kolmogorov prescription and power spectra. The Kraichnan rate is close to the expected rate and is potentially a good way to estimate the cascade rate. No distinction is found between the isotropic and cross-field rates at 1 AU. However, consideration of the likely dependence of cascade rates with distance from the Sun shows that a distinction should exist at distances closer than 1 AU but not outside 1 AU. Moreover, we find that inside 1 AU, the cross-field Kraichnan prediction can maintain agreement with the expected heating rate whereas the isotropic prediction cannot.
机译:我们构建一个数据库从王牌飞船磁场测量的太阳风波动在1非盟解决~ 2年频率在惯性区间的高端。利用外磁场的测量磁云结合等离子体测量,我们评估表达式柯尔莫哥洛夫和Kraichnan级联率为0.01赫兹从磁场功率谱和考虑各向同性和正交场利率。这些利率作为质子温度的函数和太阳风速度,比较它们预计基于质子的加热速率一个天文单位。超过10倍大于预期。我们得出这样的结论:级联率不能估计使用柯尔莫哥洛夫处方和功率谱。率和可能是一个好方法级联率估计。发现各向同性和正交场之间的利率在一个天文单位。级联率与距离的依赖太阳表明应该存在的区别距离小于1 AU,但没有1 AU。此外,我们发现在1 AU,跨域Kraichnan预测可以维护预期的升温速率而达成协议各向同性无法预测。

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