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首页> 外文期刊>Concurrency and Computation >Comparison Of Frameworks For A Next-generation Multiphase Flow Solver, Mfix: A Group Decision-making Exercise
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Comparison Of Frameworks For A Next-generation Multiphase Flow Solver, Mfix: A Group Decision-making Exercise

机译:下一代多相流求解器Mfix的框架比较:小组决策制定活动

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Computational fluid dynamics (CFD) simulations have emerged as a powerful tool for understanding the multiphase flows that occur in a wide range of engineering applications and natural processes. A multiphase CFD code called Multiphase Flow with Interphase exchanges (MFIX) has been under development at the National Energy Technology Laboratory (NETL) since the 1980s for modeling the multiphase flows that occur in fossil fuel reactors. CFD codes such as MFIX are equipped with a number of numerical algorithms to solve a large set of coupled partial differential equations over three-dimensional grids consisting of hundreds of thousands of cells on parallel computers. Currently the next-generation version of MFIX is under development with the goal of building a multiphase problem-solving environment (PSE) that would facilitate the simple reuse of modern software components by application scientists. Several open-source frameworks were evaluated to identify the best-suited framework for the multiphase PSE. There are many requirements for the multiphase PSE and each of these open-source frameworks offers functionalities that satisfy the requirements to varying extents. Therefore, matching the requirements and the functionalities is not a simple task and requires a systematic and quantitative decision-making procedure. We present a multi-criteria decision-making approach for determining a major system design decision and demonstrate its application on the framework-selection problem.
机译:计算流体动力学(CFD)模拟已成为一种强大的工具,可用于理解广泛的工程应用和自然过程中发生的多相流。自1980年代以来,美国国家能源技术实验室(NETL)一直在开发一种称为“具有相间交换的多相流”(MFIX)的多相CFD代码,用于对化石燃料反应堆中发生的多相流进行建模。 CFD代码(例如MFIX)配备了许多数值算法,可以解决由并行计算机上成千上万个单元组成的三维网格上的大量耦合偏微分方程组。当前,下一代MFIX正在开发中,其目标是建立一个多阶段的问题解决环境(PSE),该环境将促进应用科学家对现代软件组件的简单重用。对几个开源框架进行了评估,以确定最适合多阶段PSE的框架。多阶段PSE有许多要求,并且这些开源框架中的每一个都提供可以在不同程度上满足要求的功能。因此,匹配需求和功能不是一项简单的任务,需要系统和定量的决策程序。我们提出了一种用于确定主要系统设计决策的多准则决策方法,并演示了其在框架选择问题上的应用。

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