Geological mapping of our world and others: an introduction

Robert W. H. Butler, T. Torvela, Lucy Williams
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Abstract

Map-making is a fundamental tool for developing geological knowledge. It involves data collection and interpretation and has its roots in the earliest discoveries in Earth Sciences. It is the starting point for stratigraphic and structural interpretations, metamorphic facies, geochronology and modelling studies - and underpins civil engineering. From the beginning, geological mapping rapidly evolved into far more than being a simple spatial catalogue of observable rock types and landforms on the Earth's land-surface; deductive reasoning allowing this knowledge to infer subsurface Earth structure. The same approaches are down-scaled to deduce processes on the grain-scale; or up-scaled to look out to extra-terrestrial objects. This is an introduction to fourteen papers in this Special Publication that celebrates geological mapping, its historical importance and future directions, and its use in applied geology together with developing knowledge of Earth and planetary evolution and processes. Geological mapping has a long tradition of adopting evolving technologies. This introduction considers the challenges faced in synthesising interpretations, sharing competing interpretations on maps and the role of open-access digital resources in facing these challenges.
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我们的世界和其他世界的地质测绘:导言
绘制地图是发展地质知识的基本工具。它涉及数据收集和解释,起源于地球科学的最早发现。它是地层和构造解释、变质面、地质年代和建模研究的起点,也是土木工程的基础。从一开始,地质制图就迅速发展成为不仅仅是对地球陆地表面可观察到的岩石类型和地貌进行简单的空间编目,而是通过演绎推理,利用这些知识来推断地球地下结构。同样的方法还可以缩小规模,推断晶粒尺度上的过程;或者放大规模,展望地外天体。本特刊中的 14 篇论文介绍了地质制图、其历史重要性和未来发展方向,以及其在应用地质学中的应用和地球与行星演化及过程知识的发展。地质制图有着采用不断发展的技术的悠久传统。这篇导言探讨了在综合解释、共享地图上相互竞争的解释方面所面临的挑战,以及开放获取的数字资源在应对这些挑战方面所发挥的作用。
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