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Adaptive Refinement Tools for Tetrahedral Unstructured Grids

机译:四面体非结构化网格的自适应细化工具

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摘要

NASA's Langley Research Center engineers have developed a new software package for more facile computational fluid dynamics. The software's fast user run time, robustness, and efficiency have enabled its extensive use in space shuttle modeling. Adaptive Refinement Tool (ART) permits the computational modeling of flow, including jet or rocket plumes, wakes, and shocks via unstructured tetrahedral grids. Commercially available software packages often struggle to sufficiently and quickly model such complex examples of flow. ART also allows cells to be divided into two, four, or eight cells as compared to traditional software, which allows cell division only in units of eight. This is advantageous as it allows the user to control cell division more succincdy. ART executes commands via colloquial English, and has built-in internal statistical programming that increases its ease of use. ART allows the user the choice of alternate variables such as temperature or pressure at will, which facilitates modeling unusual or unlikely occurrences.
机译:NASA的Langley研究中心工程师已经开发了一个新的软件包,用于更简便的计算流体动力学。该软件的快速用户运行时间,健壮性和效率使其可以在航天飞机建模中广泛使用。自适应细化工具(ART)允许通过非结构化四面体网格对流量进行计算建模,包括射流或火箭羽流,尾流和冲击。商业上可用的软件包通常难以充分,快速地对这种复杂的流程示例进行建模。与传统软件相比,ART还允许将单元划分为两个,四个或八个单元,后者只能将单元划分为八个。这是有利的,因为它允许用户更简洁地控制细胞分裂。 ART通过口语英语执行命令,并具有内置的内部统计程序,可提高其易用性。 ART允许用户随意选择其他变量,例如温度或压力,这有助于对异常或不太可能发生的事件进行建模。

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    《NASA Tech Briefs》 |2016年第9期|70-70|共1页
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