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首页> 外文期刊>The Astrophysical Journal. Letters >On the Interpretation of Parker Solar Probe Turbulent Signals
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On the Interpretation of Parker Solar Probe Turbulent Signals

机译:论帕克太阳能探头湍流信号的解释

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In this Letter we propose a practical methodology to interpret future Parker Solar Probe (PSP) turbulent time signals even when Taylor's hypothesis is not valid. By extending Kraichnan's sweeping model used in hydrodynamics we derive the Eulerian spacetime correlation function in magnetohydrodynamic (MHD) turbulence. It is shown that in MHD, the temporal decorrelation of small-scale fluctuations arises from a combination of hydrodynamic sweeping induced by large-scale fluid velocity δu_0 and by the Alfvénic propagation along the local magnetic field. The resulting temporal part of the spacetime correlation function is used to determine the field-perpendicular wavenumber range ?k_⊥ = [k_(min), k_(max)] of the turbulent fluctuations that contribute to the power of a given frequency ω of the time signal measured in the spacecraft frame. Our analysis also shows that the shape of frequency power spectrum P_(sc)(ω) of the time signal will follow the same power law of the reduced power spectrum E(k_⊥)~k_⊥~(-α) in the plasma frame, where α is the spectral index. The proposed framework for the analysis of PSP time signals entirely relies on two simple dimensionless parameters that can be empirically obtained from PSP measurements, namely, ε = δu_0/√2 V_⊥ (where V_⊥ is the perpendicular velocity of PSP seen in the plasma frame) and the spectral index α.
机译:在这封信中,即使泰勒的假设无效,也提出了一种实用的方法来解释未来派克太阳能探头(PSP)湍流时间信号。通过延长克莱希南在流体动力学中使用的扫描模型,我们在磁水流动力学(MHD)湍流中导出了欧拉时空相关函数。结果表明,在MHD中,小规模波动的时间去相关性来自大规模流体速度ΔU_0的流体动力学扫描的组合和沿局部磁场的阿尔法传播。使用的时空相关函数的所得到的时间部分用于确定湍流波动的场垂直波数范围Δk_⊥= [k_(min),k_(max)],其有助于给定频率ω的功率ω在航天器框架中测量的时间信号。我们的分析还表明,时间信号的频率功率谱P_(SC)(ω)的形状将在等离子体框架中遵循相同的功率谱E(k_⊥)〜k_⊥〜(-α)的电力定律,其中α是光谱索引。提出的PSP时间信号的框架完全依赖于两种简单的无量纲参数,可以从PSP测量验证,即ε=ΔU_0/√2V_∞(其中V_1是等离子体中看到的PSP的垂直速度帧)和光谱索引α。

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