首页> 外文会议>ASME international conference on environmental remediation and radioactive waste management >ADVANCED SIMULATION CAPABILITY FOR ENVIRONMENTAL MANAGEMENT - CURRENT STATUS AND FUTURE APPLICATIONS
【24h】

ADVANCED SIMULATION CAPABILITY FOR ENVIRONMENTAL MANAGEMENT - CURRENT STATUS AND FUTURE APPLICATIONS

机译:先进的环境管理模拟能力-现状与未来应用

获取原文

摘要

The U.S. Department of Energy (USDOE) Office of Environmental Management (EM), Office of Soil and Groundwater (EM-12), is supporting development of the Advanced Simulation Capability for Environmental Management (ASCEM). ASCEM is a state-of-the-art scientific tool and approach that is currently aimed at understanding and predicting contaminant fate and transport in natural and engineered systems. ASCEM is a modular and open source high-performance computing tool. It will be used to facilitate integrated approaches to modeling and site characterization, and provide robust and standardized assessments of performance and risk for EM cleanup and closure activities. The ASCEM project continues to make significant progress in development of capabilities, with current emphasis on integration of capabilities in FY12. Capability development is occurring for both the Platform and Integrated Toolsets and High-Performance Computing (HPC) multiprocess simulator. The Platform capabilities provide the user interface and tools for end-to-end model development, starting with definition of the conceptual model, management of data for model input, model calibration and uncertainty analysis, and processing of model output, including visualization. The HPC capabilities target increased functionality of process model representations, toolsets for interaction with Platform, and verification and model confidence testing. The integration of the Platform and HPC capabilities were tested and evaluated for EM applications in a set of demonstrations as part of Site Applications Thrust Area activities in 2012. The current maturity of the ASCEM computational and analysis capabilities has afforded the opportunity for collaborative efforts to develop decision analysis tools to support and optimize radioactive waste disposal. Recent advances in computerized decision analysis frameworks provide the perfect opportunity to bring this capability into ASCEM. This will allow radioactive waste disposal to be evaluated based on decision needs, such as disposal, closure, and maintenance. Decision models will be used in ASCEM to identify information/data needs, and model refinements that might be necessary to effectively reduce uncertainty in waste disposal decisions. Decision analysis models start with tools for framing the problem, and continue with modeling both the science side of the problem (for example, inventories, source terms, fate and transport, receptors, risk, etc.), and the cost side of the problem, which could include costs of implementation of any action that is chosen (e.g., for disposal or closure), and the values associated with those actions. The cost side of the decision problem covers economic, environmental and societal costs, which correspond to the three pillars of sustainability (economic, social, and environmental). These tools will facilitate stakeholder driven decision analysis to support optimal sustainable solutions in ASCEM. In this paper the current state of ASCEM is first described, followed by a description of the approach that will be taken to augment ASCEM for simulating fate and transport with tools that facilitate a top-down or systems level view of finding optimal, sustainable solutions to difficult environmental (including radioactive waste) problems.
机译:美国能源部(USDOE)环境管理办公室(EM),土壤和地下水办公室(EM-12)支持环境管理高级模拟功能(ASCEM)的开发。 ASCEM是最先进的科学工具和方法,目前旨在了解和预测自然和工程系统中的污染物归宿和运输。 ASCEM是一种模块化的开源高性能计算工具。它将用于促进建模和站点特征的集成方法,并提供对EM清理和关闭活动的性能和风险的可靠且标准化的评估。 ASCEM项目在能力开发方面继续取得重大进展,当前重点是在2012财年整合能力。平台和集成工具集以及高性能计算(HPC)多进程模拟器都在进行功能开发。平台功能提供了用于端到端模型开发的用户界面和工具,从概念模型的定义,模型输入的数据管理,模型校准和不确定性分析以及模型输出的处理(包括可视化)开始。 HPC功能的目标是增加流程模型表示,与平台交互的工具集以及验证和模型置信度测试的功能。作为2012年站点应用程序推力区域活动的一部分,在一系列演示中对平台和HPC功能的集成进行了测试和评估。作为ASCEM计算和分析功能的当前成熟度,ASCEM计算和分析功能的成熟为合作开发提供了机会。决策分析工具,以支持和优化放射性废物的处置。计算机化决策分析框架的最新进展为将这种功能引入ASCEM提供了绝佳的机会。这将使放射性废物的处置可以根据决策需要进行评估,例如处置,关闭和维护。决策模型将在ASCEM中使用,以识别信息/数据需求,并对模型进行改进以有效减少废物处置决策中的不确定性。决策分析模型从确定问题的工具开始,然后继续对问题的科学方面(例如,清单,来源条款,结局和运输,接受者,风险等)和问题的成本方面进行建模。 ,其中可能包括选择执行的任何操作(例如,处置或结案)的实施成本,以及与这些操作相关的价值。决策问题的成本方面包括经济,环境和社会成本,这与可持续性的三个支柱(经济,社会和环境)相对应。这些工具将促进利益相关者驱动的决策分析,以支持ASCEM中的最佳可持续解决方案。在本文中,首先描述了ASCEM的当前状态,然后介绍了将采用增强工具以自上而下或系统级的观点寻找最佳,可持续解决方案的工具来增强ASCEM模拟命运和运输的方法的方法。棘手的环境(包括放射性废物)问题。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号