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Towards multi-phase flow simulations in the PDE framework Peano Complex geometries, thermohydraulics, and two-phase flow

机译:在PDE框架中进行多相流模拟Peano Complex几何形状,热工液压和两相流

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In this work, we present recent enhancements and new functionalities of our flow solver in the partial differential equation framework Peano. We start with an introduction including an overview of the Peano development and a short description of the basic concepts of Peano and the flow solver in Peano concerning the underlying structured but adaptive Cartesian grids, the data structure and data access optimisation, and spatial and time discretisation of the flow solver. The new features cover geometry interfaces and additional application functionalities. The two geometry interfaces, a triangulation-based description supported by the tool preCICE and a built-in geometry using geometry primitives such as cubes, spheres, or tetrahedra allow for the efficient treatment of complex and changing geometries, an essential ingredient for most application scenarios. The new application functionality concerns a coupled heat-flow problem and two-phase flows. We present numerical examples, performance and validation results for these new functionalities.
机译:在这项工作中,我们介绍了偏微分方程框架Peano中流动求解器的最新增强功能和新功能。我们从介绍开始,包括对Peano开发的概述以及对Peano和Peano中的流量求解器的基本概念的简短描述,涉及基本的结构化但自适应的笛卡尔网格,数据结构和数据访问优化以及空间和时间离散化流量求解器。新功能涵盖了几何界面和其他应用程序功能。这两个几何图形界面,preCICE工具支持的基于三角剖分的描述以及使用诸如立方体,球体或四面体之类的几何图形原语的内置几何图形,可以有效地处理复杂和变化的几何图形,这是大多数应用场景的基本要素。新的应用程序功能涉及耦合的热流问题和两相流。我们提供了这些新功能的数值示例,性能和验证结果。

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