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Geometry segregated CFD model solving framework for complex geometry calculation

机译:复杂几何计算的几何偏析CFD模型求解框架

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摘要

The computational fluid dynamics (CFD) simulators emerged as an excellent tool to support engineering problem-solving in the past decades. There are limits to the application of a CFD simulator, for example, the validation need of the model, and the computation demand of the simulation. With multiple core computers, the computation time can be lowered, and GPU computing can also be a way to decrease the computation demand. But in some cases, for example in catalyst beds, the number of individual particles is too high to calculate with a CFD simulator. In this study, we show a way to segregate the geometry of the device into smaller parts (decomposition of the geometry) and calculate only the parts of the simulation at a time, instead of whole. In this way, the computation need can be significantly lowered, without losing the crucial information, which can be stored between the geometrical steps. In this article, a framework was developed for the segregation of the geometry. The operation of the framework is shown using different case studies.
机译:计算流体动力学(CFD)模拟器作为过去几十年来支持工程问题解决的优秀工具。 CFD模拟器的应用限制,例如,模型的验证需要以及模拟的计算需求。利用多个核心计算机,可以降低计算时间,GPU计算也可以是减少计算需求的方法。但在某些情况下,例如在催化剂床中,单个颗粒的数量太高而不能用CFD模拟器计算。在这项研究中,我们展示了将设备的几何形状分离成较小的部分(几何形状的分解)并仅在时间内计算模拟的部分而不是整体。以这种方式,可以显着降低计算需求,而不丢失可以存储在几何步骤之间的重要信息。在本文中,开发了一个框架以用于对几何的分离。使用不同的案例研究显示框架的操作。

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