日光层
物理
太阳风
湍流
磁流体驱动
等离子体
磁流体力学
磁流体动力学湍流
比例(比率)
行星际空间飞行
空间物理学
行星际磁场
航空航天工程
地球物理学
机械
量子力学
工程类
作者
Tommaso Alberti,Simone Benella,Mirko Stumpo,L. Sorriso‐Valvo,V. Carbone
标识
DOI:10.1088/1361-6587/ada6ff
摘要
Abstract Turbulence, a fascinating and intricate phenomenon, has captivated scientists over different domains, mainly for its complex cross-scale nature spanning a wide range of temporal and spatial scales. Despite significant advances in theories and observations in the last decades, some aspects of turbulence still remain unsolved, motivating new efforts to understand its underlying physical mechanisms and refine mathematical theories along with numerical models.

This Topical Review explores recent findings from the Parker Solar Probe mission, providing a distinctive opportunity to characterize solar wind features at varying heliocentric distances. Analyzing the radial evolution of magnetic and velocity field fluctuations across the inertial range, a transition has been evidenced from local to global self-similarity as proximity to the Sun increases. This behavior has been reconciled with magnetohydrodynamic theory revising an old concept by emphasizing the evolving nature of the coupling between fields. This offers inspiration for novel modeling approaches to understand open challenges in interplanetary plasma physics as the heating and acceleration of the solar wind, as well as, its evolution within the inner Heliosphere.
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