GS3: A Knowledge Management Architecture for Collaborative Geologic Sequestration Modeling

I. Gorton, G. D. Black, K. Schuchardt, Chandrika Sivaramakrishnan, S. Wurstner, Peter Hui
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引用次数: 4

Abstract

Modern scientific enterprises are inherently knowledge-intensive. In general, scientific studies in domains such as geoscience, chemistry, physics and biology require the acquisition and manipulation of large amounts of experimental and field data in order to create inputs for large-scale computational simulations. The results of these simulations must then be analyzed, leading to refinements of inputs and models and further simulations. In this paper we describe our efforts in creating a knowledge management platform to support collaborative, wide-scale studies in the area of geologic sequestration modeling. The platform, known as GS3 (Geologic Sequestration Software Suite), exploits and integrates off-the-shelf software components including semantic wikis, content management systems and open source middleware to create the core architecture. We then extend the wiki environment to support the capture of provenance, the ability to incorporate various analysis tools, and the ability to launch simulations on supercomputers. The paper describes the key components of GS3 and demonstrates its use through illustrative examples. We conclude by assessing the suitability of our approach for geologic sequestration modeling and generalization to other scientific problem domains.
协同地质封存建模的知识管理体系结构
现代科技企业本质上是知识密集型的。一般来说,在地球科学、化学、物理和生物学等领域的科学研究需要获取和操纵大量的实验和现场数据,以便为大规模的计算模拟创建输入。然后必须对这些模拟的结果进行分析,从而改进输入和模型以及进一步的模拟。在本文中,我们描述了我们在创建一个知识管理平台方面所做的努力,以支持地质封存建模领域的协作性、大规模研究。该平台被称为GS3(地质封存软件套件),利用并集成了现成的软件组件,包括语义wiki、内容管理系统和开源中间件,以创建核心架构。然后,我们扩展wiki环境,以支持获取来源、合并各种分析工具的能力,以及在超级计算机上启动模拟的能力。本文介绍了GS3的主要组成部分,并通过实例说明了它的使用方法。最后,我们评估了地质封存建模方法的适用性,并将其推广到其他科学问题领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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