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Lunar mare basalt flow units: Thicknesses determined from crater size-frequency distributions.

机译:月球母玄武岩流量单位:由火山口大小-频率分布确定的厚度。

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摘要

Accurate lava flow unit thicknesses estimates are necessary to place constraints on volcanic flux estimates. We refine the technique of using the shape of crater size-frequency distribution (CSFD) curves to estimate the thickness of individual lunar mare flow units. We find that a characteristic knee often observed in CSFD curves is reasonably interpreted to represent the presence of two lava flow units separated in time, and that the diameter at which this knee occurs is related to the thickness of the overlying flow unit. Examination of 58 curves with this characteristic knee in several lunar nearside basins (Oceanus Procellarum, Imbrium, Tranquillitatis, Humorum, Cognitum, Nubium, and Insularum) allowed us to identify flow units that have not been detected in low-sun images. We found that the range of flow unit thickness is ~20-220 m and the average is ~30-60 m. This technique expands considerably the ability to assess lava flow unit thicknesses and volumes on the Moon and planets.
机译:准确的熔岩流单位厚度估算对于限制火山通量估算是必要的。我们完善了使用陨石坑大小-频率分布(CSFD)曲线的形状来估算各个月球母流单位厚度的技术。我们发现,在CSFD曲线中经常观察到的特征性拐点被合理地解释为代表了两个熔岩流动单元在时间上分开的存在,并且该拐点发生的直径与上覆流动单元的厚度有关。在几个月球近旁盆地(大洋蛇腹,Imbrium,Tranquillitatis,Humorum,Cognitum,Nbium和Insularum)中检查具有该特征膝盖的58条曲线,使我们能够识别在低太阳图像中未检测到的流量单位。我们发现流量单位厚度的范围是〜20-220 m,平均值是〜30-60 m。这项技术大大扩展了评估月球和行星上熔岩流单位厚度和体积的能力。

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