技术说明:用于宇宙核素暴露定年的透明中间层数据管理和分析基础设施的原型

IF 2.7 Q2 GEOCHEMISTRY & GEOPHYSICS
G. Balco
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引用次数: 19

摘要

摘要地质测年法在很大程度上不直接测量年龄。相反,将地球化学观测解释为地质上有用的参数——年龄或速率——需要一个解释性的中间层计算和支持数据集。这些都是活跃研究的主题,并且发展迅速,因此任何天气分析都需要使用不断改进的计算方法,从不断增长的原始观测数据集中反复重新计算大量的年龄。地质年代学的许多重要应用涉及对大型和不断增长的数据集进行区域或全球分析,因此这一特性是这些应用进展的障碍。本文描述了ICE-D(非正式宇宙生成-核素暴露-年龄数据库)数据库项目,这是一个原型计算基础设施,用于处理一个地质年代学应用中的这一障碍-宇宙生成-核素暴露测年-旨在通过使中间层计算对用户动态和透明来实现可视化或分析各种数据集。这个概念的一个重要方面是,它被设计成一个前瞻性的研究工具,而不是一个向后看的档案:只有观测数据(不会过时)被存储,派生数据(一旦中间层计算得到改进就会过时)不被存储,而是在分析应用程序需要数据时动态计算。这最大限度地减少了与归档派生结果相关的“锁定”效应,这些结果容易迅速过时,并且允许同化新的观测数据和改进中间层计算,而不会在分析应用程序级别上产生额外的开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Technical note: A prototype transparent-middle-layer data management and analysis infrastructure for cosmogenic-nuclide exposure dating
Abstract. Geologic dating methods for the most part do not directly measure ages. Instead, interpreting a geochemical observation as a geologically useful parameter – an age or a rate – requires an interpretive middle layer of calculations and supporting data sets. These are the subject of active research and evolve rapidly, so any synoptic analysis requires repeated recalculation of large numbers of ages from a growing data set of raw observations, using a constantly improving calculation method. Many important applications of geochronology involve regional or global analyses of large and growing data sets, so this characteristic is an obstacle to progress in these applications. This paper describes the ICE-D (Informal Cosmogenic-Nuclide Exposure-age Database) database project, a prototype computational infrastructure for dealing with this obstacle in one geochronological application – cosmogenic-nuclide exposure dating – that aims to enable visualization or analysis of diverse data sets by making middle-layer calculations dynamic and transparent to the user. An important aspect of this concept is that it is designed as a forward-looking research tool rather than a backward-looking archive: only observational data (which do not become obsolete) are stored, and derived data (which become obsolete as soon as the middle-layer calculations are improved) are not stored but instead calculated dynamically at the time data are needed by an analysis application. This minimizes “lock-in” effects associated with archiving derived results subject to rapid obsolescence and allows assimilation of both new observational data and improvements to middle-layer calculations without creating additional overhead at the level of the analysis application.
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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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