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Integrating LiDAR Topography Into the Study of Earthquakes and Faulting.

机译:将LiDAR地形图整合到地震和断层研究中。

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摘要

Meter-resolution topography gathered by LiDAR (Light Detection and Ranging) has become an indispensable tool for better understanding of many surface processes including those sculpting landscapes that record information about earthquake hazards for example. For this reason, and because of the spectacular representation of the phenomena that these data provide, it is appropriate to integrate these data into Earth science educational materials. I seek to answer the following research question: "will using the LiDAR topography data instead of, or alongside, traditional visualizations and teaching methods enhance a student's ability to understand geologic concepts such as plate tectonics, the earthquake cycle, strike-slip faults, and geomorphology?";In order to answer this question, a ten-minute introductory video on LiDAR and its uses for the study of earthquakes entitled "LiDAR: Illuminating Earthquake Hazards" was produced. Additionally, LiDAR topography was integrated into the development of an undergraduate-level educational activity, the San Andreas fault (SAF) earthquake cycle activity, designed to teach introductory Earth science students about the earthquake cycle. Both the LiDAR video and the SAF activity were tested in undergraduate classrooms in order to determine their effectiveness. A pretest and posttest were administered to introductory geology lab students. The results of these tests show a notable increase in understanding LiDAR topography and its uses for studying earthquakes from pretest to posttest after watching the video on LiDAR, and a notable increase in understanding the earthquake cycle from pretest to posttest using the San Andreas Fault earthquake cycle exercise. These results suggest that the use of LiDAR topography within these educational tools is beneficial for students when learning about the earthquake cycle and earthquake hazards.
机译:LiDAR(光检测和测距)收集的仪表分辨率地形已成为不可或缺的工具,用于更好地理解许多表面过程,包括雕刻风景的地形,例如记录有关地震灾害的信息。由于这个原因,并且由于这些数据所提供现象的壮观表现,将这些数据整合到地球科学教育资料中是适当的。我试图回答以下研究问题:“将使用LiDAR地形数据代替传统的可视化方法和教学方法,还是与之结合使用,将增强学生理解地质概念的能力,例如板块构造,地震周期,走滑断层和为了回答这个问题,制作了一个名为LiDAR:照亮地震危险的有关LiDAR的十分钟介绍性视频及其在地震研究中的用途。此外,LiDAR地形被整合到本科生教育活动圣安德烈亚斯断层(SAF)地震周期活动的开发中,旨在向地球科学入门课程的学生介绍地震周期。为了确定其有效性,LiDAR视频和SAF活动都在大学教室中进行了测试。对地质学入门的学生进行了前测和后测。这些测试的结果表明,在观看LiDAR视频后,人们对LiDAR地形及其从预测试到后测试的地震研究的了解有了显着提高,并且对使用San Andreas Fault地震周期从预测试到后测试的地震周期的理解有了显着提高。行使。这些结果表明,在学习地震周期和地震灾害时,在这些教育工具中使用LiDAR地形对学生是有益的。

著录项

  • 作者

    Robinson, Sarah Elizabeth.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Geology.;Plate Tectonics.;Geomorphology.
  • 学位 M.S.
  • 年度 2011
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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