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Magnetopause orientation: Comparison between generic residue analysis and BVmethod

机译:磁取向:对比通用的残留分析和BVmethod

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Determining the direction normal to the magnetopause layer is a key step for any study of this boundary. Various techniques have been developed for this purpose. We focus here on generic residue analysis (GRA) methods, which are based on conservation laws, and the new iterative BV method, where B represents the magnetic field and V refers to the ion velocity. This method relies on a fit of the magnetic field hodogram against a modeled geometrical shape and on the way this hodogram is described in time. These two methods have different underlying model assumptions and validity ranges. We compare here magnetopause normals predicted by BV and GRA methods to better understand the sensitivity of each method on small departures from its own physical hypotheses. This comparison is carried out first on artificial data with magnetopause-like noise. Then a statistical study is carried out using a list of 149 flank and dayside magnetopause crossings from Cluster data where the BV method is applicable, i.e., where the magnetopause involves a single-layer current sheet, with a crudely C-shaped magnetic hodogram. These two comparisons validate the quality of the BV method for all these cases where it is applicable. The method provides quite reliable normal directions in all these cases, even when the boundary is moving with a varying velocity, which distorts noticeably the results of most of the other methods.
机译:确定正常的方向磁层的研究是一个关键的步骤这个边界。为此开发了。通用的残留分析(GRA)方法,根据守恒定律,新的迭代BV方法,B表示磁场和V是指离子速度。依赖于合适的磁场hodogram对建模和几何形状这hodogram描述。有不同的底层模型的方法假设和有效范围。磁层法线预测BV和草方法来更好地理解的敏感性每个方法在小偏离自己的轨道物理假说。首先对人工数据magnetopause-like噪音。进行了使用149侧面和列表从集群数据的光面磁口岸BV方法是适用的,例如,在哪里磁层包括单层电流表,大致位于脑部磁hodogram。这两个比较验证的质量所有这些情况下,BV方法适用。正常的方向在所有这些情况下,即使边界移动的速度不同,扭曲明显多数的结果另一个方法。

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