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WESTINGHOUSE WASTE SIMULATION AND OPTIMIZATION SOFTWARE TOOL

机译:西屋废物模拟和优化软件工具

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Applications for dynamic simulation can be found in virtually all areas of process engineering. The tangible benefits of using dynamic simulation can be seen in tighter design, smoother start-ups and optimized operation. Thus, proper implementation of dynamic simulation can deliver substantial benefits. These benefits are typically derived from improved process understanding. Simulation gives confidence in evidence based decisions and enables users to try out lots of 'what if scenarios until one is sure that a decision is the right one. In radioactive waste treatment tasks different kinds of waste with different volumes and properties have to be treated, e.g. from NPP operation or D&D activities. Finding a commercially and technically optimized waste treatment concept is a time consuming and difficult task. The Westinghouse Waste Simulation and Optimization Software Tool will enable the user to quickly generate reliable simulation models of various process applications based on equipment modules. These modules can be built with ease and be integrated into the simulation model. This capability ensures that this tool is applicable to typical waste treatment tasks. The identified waste streams and the selected treatment methods are the basis of the simulation and optimization software. After implementing suitable equipment data into the model, process requirements and waste treatment data are fed into the simulation to finally generate primary simulation results. A sensitivity analysis of automated optimization features of the software generates the lowest possible lifecycle cost for the simulated waste stream. In combination with proven waste management equipments and integrated waste management solutions, this tool provides reliable qualitative results that lead to an effective planning and minimizes the total project planning risk of any waste management activity. It is thus the ideal tool for designing a waste treatment facility in an optimum manner, taking account of the detailed waste stream and specific requirements.
机译:几乎在过程工程的所有领域都可以找到动态仿真的应用程序。在更紧凑的设计,更平稳的启动和优化的操作中可以看到使用动态仿真的明显好处。因此,正确执行动态仿真可以带来巨大的好处。这些好处通常来自对过程的更好理解。仿真使人们对基于证据的决策充满信心,并使用户能够尝试多种“假设方案”,直到确定某项决策是正确的决策为止。在放射性废物处理任务中,必须处理具有不同体积和性质的不同种类的废物,例如废物。来自NPP运营或D&D活动。寻找商业上和技术上最优化的废物处理概念是一项耗时且困难的任务。西屋废物模拟和优化软件工具将使用户能够基于设备模块快速生成各种过程应用程序的可靠模拟模型。这些模块可以轻松构建,并集成到仿真模型中。此功能确保该工具适用于典型的废物处理任务。识别出的废物流和选择的处理方法是模拟和优化软件的基础。在将合适的设备数据实现到模型中之后,将过程要求和废物处理数据输入到仿真中,以最终生成主要的仿真结​​果。软件自动优化功能的敏感性分析可为模拟废物流产生最低的生命周期成本。结合久经考验的废物管理设备和集成的废物管理解决方案,此工具可提供可靠的定性结果,从而导致有效的规划,并将任何废物管理活动的总项目规划风险降至最低。因此,它是考虑到详细的废物流和特定要求,以最佳方式设计废物处理设施的理想工具。

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