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Towards a Grid enabled system for multicomponent materials design

机译:朝向支持多组分材料设计的网格系统

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We are developing a portal for multicomponent materials design using Grid-enabled large-scale simulations. In this paper we report on our services based application architecture which allows integration of simulation software with Grid services to provide a Web-based computational laboratory for the modeling of Al-Cu-Mg-Si alloys. We examine user requirements and describe the design of our framework. Our architecture is implemented using existing middleware such as the Globus and Java CoG toolkits. An interesting feature of our design is the separation of the high-level specification of the materials modeling system from the implementation through the use of a markup language such as XML. We use markup languages with domain-specific extensions to specify (in architecture-independent form) rules and constraints that allow meaningful composition of simulation tasks and experimentally determined material properties. In addition, we use them to specify application code interfaces so that our simulation server can be dynamically reconfigured to include new software and constraints.
机译:我们正在使用支持的大型大规模模拟开发用于多组分材料设计的门户。在本文中,我们报告了我们的基于服务的应用架构,它允许将仿真软件与网格服务集成,以提供基于网的计算实验室,用于al-Cu-Mg-Si合金的建模。我们检查用户要求并描述框架的设计。我们的架构是使用诸如Globus和Java Cog工具包等现有中间件实现的。我们设计的一个有趣特点是通过使用如XML等标记语言来分离材料建模系统的高级规范。我们使用具有域特定扩展的标记语言来指定(以架构无关的形式)规则和约束,允许模拟任务的有意义组成和实验确定的材料特性。此外,我们使用它们来指定应用程序代码接口,以便可以动态重新配置我们的仿真服务器以包括新软件和约束。

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