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Pay the PIED Piper: Guidelines to Visualize Large Geochemical Datasets on Piper Diagrams

机译:支付PIED PIPER:在PIPER图上可视化大地球化学数据集的准则

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摘要

The Piper diagram has increased in popularity since its 1944 introduction and is now one of the most familiar and effective tools in the hydrogeologist's toolbox. Within the Piper diagram, three points on three related plots fully display the major ionic species of a water sample. Recently the size and availability of datasets have increased as additional field measurements and modeling results are shared more effectively in online databases. This growth presents opportunities and challenges for data analysis and conveyance-larger and longer datasets increase the potential to identify trends and patterns, but traditional Piper diagrams are quickly overwhelmed by large datasets as dense points overlap and become obscured. We present guidelines for effectively displaying large geochemical datasets on traditional Piper diagrams and new code that adds novel functionality for following these generic guidelines. This code, plotting interesting environmental data with Piper diagrams (PIED Piper), can be run within the Matlab environment or through a stand-alone graphical user interface, and is the first Matlab code to generate Piper diagrams. The illustrative examples herein demonstrate (1) how limitations in displays of large datasets may be overcome with translucent symbology, contours, and heatmaps to identify trends and patterns, (2) how clusters of similar points can be identified and differentiated with convex hulls, and (3) how temporal-and-spatial patterns may be visually diagnosed with image groups and movies. The guidelines discussed in these examples will aid PIED Piper users to achieve the two goals of effective big data visualization: analysis and communication.
机译:自1944年引言自1944年以来,Piper图已有普及,现在是水文家工具箱中最熟悉和最有效的工具之一。在牵引器图中,三个相关图中的三个点充分显示水样的主要离子物种。最近,数据集的大小和可用性随着在线数据库中更有效地共享的其他场测量和建模结果而增加。这种增长为数据分析和传送的机会和挑战提出了更大,更长的数据集增加了识别趋势和模式的潜力,但传统的吹笛者图是浓密的分数重叠的大型数据集,而传统的吹笛者图是重叠并变得模糊的。我们提供了有效地在传统的Piper图表和新代码上显示大型地球化学数据集的准则,这些代码为以下几种通用指南添加了新功能。使用Piper图(PIED Piper)绘制有趣的环境数据,可以在MATLAB环境中或通过独立的图形用户界面来绘制有趣的环境数据,并且是第一个生成PIPER图的MATLAB代码。本文的说明性示例证明(1)可以通过半透明的符号符号,轮廓和热量移植来克服大数据集的显示的限制,以识别趋势和模式,(2)如何用凸壳识别和区分类似点的簇。 (3)如何用图像组和电影视觉诊断颞间空间模式。这些例子中讨论的指导方针将帮助Pied Piper用户实现有效的大数据可视化的两个目标:分析和沟通。

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  • 来源
    《Ground water》 |2020年第3期|464-469|共6页
  • 作者单位

    West Virginia Univ Dept Geol & Geog 330 Brooks Hall Morgantown WV 26506 USA;

    Syracuse Univ Dept Earth Sci Heroy Geol Lab Syracuse NY 13244 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 21:07:24

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