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On the Progress Design of Integrated Geologic Analysis System: Object-Relational Database Model and Visualization for Earth Resources

机译:集成地质分析系统的进度设计:对象关系数据库模型和地球资源可视化

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摘要

An object-relational data model is an entry point and integral part of geologic analysis system, in which we can start geologic modeling inside a database. A conceptual data model named the Geoscience (Earth Resources) Data Model 3.0 has been developed based on the conceptual design of NADM-C1.0 and EGDM 812. Such adaptation makes this data model interoperable with data models from other geoscience fields. The focus of current data model is to effectively manage multi datasets related with the study of earth resources and to create relationship among data types. The conceptual data model for earth resources is successfully implemented physically by integrating a GIS and relational data storage. The direct link between relational database and GIS makes the database contents highly visual and spatially enabling. Database contents are fully georeferenced through different types of georeferencing systems that enables data integration, visualization and analysis of multi geoscience datasets in 2D and 3D environment. A new way of geologic analysis through visualization of virtually all kinds of geoscience datasets is proposed. The earth resources research and industry can take benefits on this system through better data management and effective geologic visualization that in turn accelerate a better understanding of earth resources. Meanwhile wider geoscience community will benefit from better interaction and data sharing among geoscience fields for accelerating a better understanding of our complex earth.
机译:对象关系数据模型是地质分析系统的入口和组成部分,我们可以在其中开始数据库内部的地质建模。基于NADM-C1.0和EGDM 812的概念设计,开发了名为Geoscience(地球资源)数据模型3.0的概念数据模型。这种修改使该数据模型可与其他Geoscience领域的数据模型互操作。当前数据模型的重点是有效管理与地球资源研究相关的多个数据集,并在数据类型之间建立关系。通过集成GIS和关系数据存储,可以成功地物理实现地球资源的概念数据模型。关系数据库和GIS之间的直接链接使数据库内容具有高度的可视性和空间支持性。数据库内容通过不同类型的地理配准系统进行了完全地理配准,从而可以在2D和3D环境中对多个地球科学数据集进行数据集成,可视化和分析。提出了一种通过可视化几乎所有地球科学数据集进行地质分析的新方法。地球资源的研究和行业可以通过更好的数据管理和有效的地质可视化,从该系统中受益,从而加速对地球资源的更好理解。同时,更广泛的地球科学界将从地球科学领域之间更好的交互和数据共享中受益,以加速对我们复杂地球的更好理解。

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