沙盒-创建和分析合成沉积物部分与R

IF 2.7 Q2 GEOCHEMISTRY & GEOPHYSICS Geochronology Pub Date : 2021-12-02 DOI:10.5194/gchron-2021-39
M. Dietze, S. Kreutzer, M. Fuchs, Sascha Meszner
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引用次数: 1

摘要

摘要大部分的古环境信息都是从被称为地质档案的增生沉积物中的代用数据中推断出来的。代理数据和分析工作流的有效性通常是隐式假设的,系统测试和不确定性估计仅限于现代模拟研究或降低复杂性的案例研究。然而,探索代理功能的有效性和可变性的更通用和一致的方法是将给定的地理档案转换为模型场景:“虚拟双胞胎”。在这里,我们介绍了一个概念框架和数值工具集,允许定义和分析合成沉积物剖面。R包沙盒通过与深度相关的规则和特定于颗粒的参数描述任意地层一致的沉积,具有充分的可扩展性和灵活性。可以采取虚拟样品,产生具有明确参数的离散颗粒混合物。然后,这些样本可以进行虚拟制备和分析,例如用于测试假设。我们阐述了沙盒的概念,解释了沉积剖面如何被映射到模型中,并通过一个典型的应用领域,探讨了与样品几何形状和粒度特定年龄继承影响相关的普遍地质年代学研究问题。我们总结了模型框架的进一步应用场景,这些场景与更广泛的地质年代学社区相关,但不限于此。
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sandbox – Creating and Analysing Synthetic Sediment Sections with R
Abstract. The majority of palaeoenvironmental information is inferred from proxy data contained in accretionary sediments, called geo-archives. The validity of proxy data and analysis workflows are usually assumed implicitly, with systematic tests and uncertainty estimates restricted to modern analogue studies or reduced-complexity case studies. However, a more generic and consistent approach to exploring the validity and variability of proxy functions would be to translate a given geo-archive into a model scenario: a "virtual twin". Here, we introduce a conceptual framework and numerical toolset that allows the definition and analysis of synthetic sediment sections. The R package sandbox describes arbitrary stratigraphically consistent deposits by depth-dependent rules and grain-specific parameters, allowing full scalability and flexibility. Virtual samples can be taken, resulting in discrete grain-mixtures with well-defined parameters. These samples can then be virtually prepared and analysed, for example to test hypotheses. We illustrate the concept of sandbox, explain how a sediment section can be mapped into the model and, by focusing on an exemplary field of application, we explore universal geochronological research questions related to the effects of sample geometry and grain-size specific age inheritance. We summarise further application scenarios of the model framework, relevant for but not restricted to the broader geochronological community.
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来源期刊
Geochronology
Geochronology Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
0.00%
发文量
35
审稿时长
19 weeks
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