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A rapid parameter configuration method for film hole component in pipe-net calculation

机译:管网计算中薄膜孔部件的快速参数配置方法

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摘要

Film hole component is one of the most important cooling components in pipe-net calculation for blade design. However, owing to a large number of gas film holes, manual parameter configuration for film hole components will affect the efficiency of pipe-net calculation. Extracting parameters from the geometric structure of film holes automatically could significantly shorten the time consumption of pipe-net calculation. In this paper, numeric analysis parameter and group data required by film hole components were summarized and analyzed, based on which a parameter configuration strategy was proposed. Aiming at the extraction of group data, a film hole grouping method was presented. By converting the grouping requirements in fluid-heat analysis into a geometric row pattern recognition problem, it further redefines the geometric row as a linear distribution by a projection method and a parametric mapping method and finally solves the grouping problem by a linear search algorithm. A numeric parameter extraction method was put forward to redefine analysis parameters with geometric properties and identify certain geometry primitives. The proposed algorithm and method are verified with instances. The results illustrate that our method could shorten parameter configuration process of film hole component into several minutes from several hours in manual, with more reliable accuracy.
机译:薄膜孔部件是刀片设计的管网计算中最重要的冷却部件之一。然而,由于大量的气膜孔,薄膜孔部件的手动参数配置将影响管道净计算的效率。从薄膜孔的几何结构中提取参数可以显着缩短管网计算的时间消耗。在本文中,总结和分析了胶卷组件所需的数值分析参数和组数据,基于提出了参数配置策略。旨在提取组数据,提出了一种薄膜孔分组方法。通过将流体热分析中的分组要求转换成几何行模式识别问题,通过投影方法和参数映射方法将几何行作为线性分布重新定义,并且最终通过线性搜索算法解决分组问题。提出了一种数字参数提取方法,以重新定义与几何属性的分析参数,并识别某些几何元素。提出的算法和方法是用实例验证的。结果表明,我们的方法可以在手动中从几个小时内缩短几分钟的胶片孔部件的参数配置过程,更可靠。

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