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首页> 外文期刊>Journal of geophysical research. Planets >Isostatic Compensation of the Lunar Highlands
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Isostatic Compensation of the Lunar Highlands

机译:月亮高原的等静电补偿

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The lunar highlands are isostatically compensated at large horizontal scales, but the specific compensation mechanism has been difficult to identify. With topographic data from the Lunar Orbiter Laser Altimeter and gravity data from the Gravity Recovery and Interior Laboratory, we investigate support of highland topography. Poor correlation between crustal density and elevation shows that Pratt compensation is not important in the highlands. Using spectrally weighted admittance, we compared observed values of geoid-to-topography ratio (GTR) with those predicted by isostatic models. Observed GTRs are 25.8_(-5.7)~(+7.5) m/km for the nearside highlands and 39.3_(-6.2)~(+5.7) m/km for the farside highlands. These values are not consistent with flexural compensation of long-wavelength topography or Airy isostasy defined under an assumption of equal mass in crustal columns. Instead, the observed GTR values are consistent with models of Airy compensation in which isostasy is defined under a requirement of equal pressures at equipotential surfaces at depth. The gravity and topography data thus reveal that long-wavelength topography on the Moon is most likely compensated by variations in crustal thickness, implying that highland topography formed early in lunar history before the development of a thick elastic lithosphere.
机译:农历高地在大水平尺度上似刺地补偿,但具体的补偿机制难以识别。利用来自Grunar Orbiter激光高度计和重力恢复和内部实验室的重力数据的地形数据,我们调查了高地地形的支持。地壳密度和高度之间的相关性差观表明,普拉特补偿在高地并不重要。使用光谱加权导纳,我们将观察到的大量地形貌比(GTR)的值与等静压模型预测的那些。观察到的GTR是25.8 _( - 5.7)〜(+7.5)M / km为近侧高地,39.3 _( - 6.2)〜(+5.7)M / km,为远处高地。这些值不与在地壳柱上假设在相等质量的假设下定义的长波长形貌或通风蛋白酶的弯曲补偿。相反,观察到的GTR值与通气补偿的模型一致,其中在静电表面在深度的等电位表面的等电压要求下定义了欧偶偶数。因此,重力和地形数据揭示了月球上的长波长地形最有可能通过地壳厚度的变化来补偿,这意味着在厚弹性岩石圈的发展之前在农历历史早期形成的高地地形。

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