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The tectonic and volcanic evolution of Ganymede and its implications for the satellite's internal structure and evolution.

机译:木卫三的构造和火山演化及其对卫星内部结构和演化的影响。

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摘要

Volcanism and tectonic deformation on Ganymede were separated on the basis of relative age into three broad episodes, each of which was characterized in detail. These observations were used to test multiple models of the relationship of surface features to the satellite's internal structure and evolution.; This analysis results in the following model for Ganymede's volcanic and tectonic history: Dark terrain was emplaced at least 3.8 Gyr ago, by accumulation of dark volcanic materials to a global average thickness of about 5 km. Two large systems of radial and concentric furrows, one each in the sub-Jovian and anti-Jovian hemisphere, formed throughout this period by endogenic extensional tectonic reactivation of impact-generated fracture zones. Younger and thicker dark volcanic materials accumulated within a geologically "anomalous" region around 25{dollar}spcirc{dollar}S,122{dollar}spcirc{dollar}W, within which tectonic deformation was also more concentrated. At the end of dark-material volcanism a third furrow system formed, and is characterized by a radius of over 5000 km and an arrangement of troughs radial to the coordinates given above.; Ganymede underwent a fundamental change in the style of its tectonics and volcanism at least 3.8 Gyr ago. Initially, large lithospheric blocks underwent significant shear offsets, accompanied by pervasive deformation of reticulate and lineated terrains. Light material then began to be emplaced, in close association with formation of U-shaped tectonic grooves. The oldest or nearly oldest light materials accumulated in the geologically anomalous region as a distinct terrain type. As grooved and light terrain formation became widespread, they occurred in a three-stage sequence that is recognizable across large areas. Groove formation was initiated by reactivation of preexisting structures, including both furrows and an additional global lithospheric "fabric" that may be related to tidal despinning.; It is proposed that this sequence of tectonism and volcanism resulted from long-term warming of an initially cold, undifferentiated satellite interior consisting of silicates and water-dominated ices. Tectonism is interpreted to have resulted primarily from global expansion, and to a lesser extent from mantle convection. Volcanism is interpreted to have resulted from removal from the warming interior of a limited amount of ammonia-water solution.
机译:根据相对年龄将木卫三上的火山作用和构造变形分为三个大事件,每个事件都有详细的特征。这些观察结果被用来测试表面特征与卫星内部结构和演化之间关系的多种模型。该分析得出以下关于Ganymede火山和构造历史的模型:至少在3.8 Gyr以前,通过将深色火山物质堆积到全球平均厚度约5 km,建立了黑暗地形。在此期间,通过撞击产生的断裂带的内生伸展构造再活化作用,形成了两个大的径向和同心犁沟系统,分别在亚木纹和半木纹半球中形成。更年轻,更厚的深色火山岩物质聚集在25 sspcirc {s},122 sspcirc {dollar} W附近的地质“异常”区域内,其中构造变形也更集中。暗物质火山活动结束时,形成了第三条沟系,其特征是半径超过5000公里,并在上述坐标的径向布置了一个槽。盖尼米德(Ganymede)至少在3.8年前就发生了构造和火山样式的根本变化。最初,较大的岩石圈块经历了明显的剪切偏移,并伴随着网状和带线地形的普遍变形。然后开始放置轻质材料,与形成U形构造凹槽紧密相关。地质异常区域中积累的最古老或接近最古老的轻质物质是一种独特的地形类型。随着开槽和轻型地形的形成变得普遍,它们以三个阶段的顺序发生,在大范围内可以识别。槽的形成是通过重新激活先前存在的结构而引发的,包括沟和可能与潮汐破坏有关的额外的全球岩石圈“织物”。有人认为,这种构造和火山作用的序列是由长期缓慢变暖造成的,最初是由硅酸盐和水占主导的冰组成的,最初是冷的,未分化的卫星内部。构造主义被认为主要是由于全球扩张而造成的,在较小程度上是由于地幔对流造成的。火山作用被认为是由于从温暖的室内去除了少量的氨水溶液而导致的。

著录项

  • 作者

    Murchie, Scott Lawrence.;

  • 作者单位

    Brown University.;

  • 授予单位 Brown University.;
  • 学科 Geodesy.; Physics Astronomy and Astrophysics.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 346 p.
  • 总页数 346
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大地测量学;天文学;
  • 关键词

  • 入库时间 2022-08-17 11:50:49

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