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首页> 外文期刊>Geophysical Research Letters >Transient and disruption cavity dimensions of complex terrestrial impact structures derived from magnetic data - art. no. 2087
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Transient and disruption cavity dimensions of complex terrestrial impact structures derived from magnetic data - art. no. 2087

机译:从磁数据得出的复杂地面冲击结构的瞬变和破坏腔尺寸-艺术。没有。 2087

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摘要

Accurate transient and disruption cavity dimensions are critical for estimating the energy release associated with impact. Transient and disruption cavity size can, in principle, be inferred from morphometric relationships based on crater diameter. However, locating the crater rim can be difficult for eroded terrestrial craters, and existing morphometric relationships are mostly based on observations of extraterrestrial craters where morphologic features at best provide imprecise constraints on the collapsed disruption cavity margin. Fortunately, magnetic survey data collected over terrestrial impact structures demonstrate that collapsed disruption cavity size can be estimated directly from changes in the magnetic anomaly character. A lower bound on this parameter can be defined by the outer limit of short-wavelength, intense magnetic anomalies produced by impact melt and/or suevite deposits. An upper bound is given by the inner limit of magnetic anomaly trends associated with the pre-impact target rock configuration. Using published values of crater diameters (D) and values of collapsed disruption cavity diameters (D-CDC) derived from magnetic data for 19 complex terrestrial impact structures, we derive the relationship D-CDC = 0.49D. These data and the possibility of geometrical similarity in crater collapse suggest that this relationship is independent of complex crater size over more than a decade of size variation. [References: 24]
机译:准确的瞬态和破坏腔尺寸对于估算与冲击相关的能量释放至关重要。原则上,可以根据基于弹坑直径的形态关系推断出瞬态腔和破坏腔的大小。但是,对于被侵蚀的陆地陨石坑,很难找到陨石坑边缘,并且现有的形态计量关系主要基于对地球外陨石坑的观察,在该观测中,形态特征充其量只能对塌陷的破裂腔边缘提供不精确的约束。幸运的是,在地面撞击结构上收集的磁测量数据表明,坍塌的破裂腔尺寸可以直接根据磁异常特征的变化来估算。该参数的下限可以由冲击熔体和/或镁橄榄石沉积物产生的短波,强磁异常的外部界限定义。上限由与撞击前目标岩石构型相关的磁异常趋势的内部极限给出。使用公布的坑口直径(D)值和坍塌破裂腔直径(D-CDC)值,这些值是从19个复杂的地面撞击结构的磁数据得出的,得出的关系D-CDC = 0.49D。这些数据和陨石坑坍塌几何相似的可能性表明,这种关系在十多年的尺寸变化中与复杂的陨石坑大小无关。 [参考:24]

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