Exploring the potential of an Augmented Reality sandbox for geovisualization

Rebekka Bärthele, S. Sauer, J. Wilkening
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Abstract

Abstract. Geovisualization provides theories, methods, and tools for visualizing processes on the earth’s surface. One of the key challenges of the field is to find interesting and engaging ways to display geographical data. In this paper, we focus on the Augmented Reality (AR) Sandbox. An AR Sandbox combines a box filled with sand with a 3D camera and a projector to explore the topography of the sand terrain in real time and allow water flow simulations. This direct interaction between user and topography makes the AR sandbox a fascinating, explorative tool in the field of geovisualization.In this paper, we give an overview about how an AR Sandbox is built, what components are required, and how configuration, calibration or adding additional features work. We also discuss ways to improve the usability of the AR Sandbox or change its appearance to make it more suitable for specific use cases in geovisualization. Of particular importance is the DEM tool, which allows real-life data to be remodeled in the AR Sandbox to explore the terrain, create rainfall simulations, or export the current terrain as a DEM. Further advantages of using an AR sandbox for geovisualization are the hands-on methodology and gamification aspects, which motivate people to interact with topography and improve learning effects in the geosciences.
探索增强现实沙盒在地理可视化中的潜力
摘要地理可视化为可视化地球表面的过程提供了理论、方法和工具。该领域的主要挑战之一是找到有趣和引人入胜的方式来显示地理数据。本文主要研究增强现实(AR)沙盒。AR沙盒将装满沙子的盒子与3D相机和投影仪结合在一起,可以实时探索沙子地形的地形,并允许水流模拟。这种用户和地形之间的直接交互使AR沙盒成为地理可视化领域一个迷人的探索性工具。在本文中,我们概述了AR沙盒是如何构建的,需要哪些组件,以及如何配置,校准或添加额外的功能。我们还讨论了提高AR沙盒可用性或改变其外观以使其更适合地理可视化中的特定用例的方法。特别重要的是DEM工具,它允许在AR沙盒中重塑现实生活中的数据,以探索地形,创建降雨模拟,或将当前地形导出为DEM。使用AR沙盒进行地理可视化的进一步优势是实践方法和游戏化方面,这激励人们与地形互动,提高地球科学的学习效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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