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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Efficient stall compliance prediction method for trimmed very light aircraft with high-lift devices
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Efficient stall compliance prediction method for trimmed very light aircraft with high-lift devices

机译:具有升力装置的超轻型飞机的有效失速顺应性预测方法

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摘要

An efficient stall compliance prediction method using quick configuration generation, adapted mesh, high fidelity analysis, and wind tunnel test data for trimmed very light aircraft is proposed. The three-dimensional Navier-Stokes equations are used to determine the characteristics of the flow field around the aircraft, and the k- shear stress transport model is used to interpret the turbulent flow as a solver in the high fidelity analysis. The calibrated mesh and model are developed by comparing the results with the wind tunnel test and adjusting the adapted mesh to match the wind tunnel data. The calibrated mesh and model are applied to conduct the full-scale very light aircraft analysis for the clean and full flap extended flight conditions to comply with the CS-VLA stall regulations. It is recommended that the flap area be increased in the trimmed full flap extended condition. The proposed method demonstrates the feasibility and effectiveness of very light aircraft VLA stall compliance prediction in reducing the development cost and time with small configuration changes at the preliminary very light aircraft design stage.
机译:提出了一种有效的失速顺应性预测方法,该方法使用快速的配置生成,自适应网格,高保真度分析和修剪的超轻型飞机的风洞测试数据。三维Navier-Stokes方程用于确定飞机周围流场的特性,而k切应力传递模型用于将湍流解释为高保真度分析中的求解器。通过将结果与风洞测试进行比较,并调整适应的网格以匹配风洞数据,可以开发出经过校准的网格和模型。校准后的网格和模型适用于针对清洁和全襟翼扩展飞行条件进行全面的超轻型飞机分析,以符合CS-VLA失速规定。建议在修剪的全瓣伸展状态下增加瓣面积。所提出的方法证明了非常轻型飞机VLA失速顺应性预测的可行性和有效性,该预测在非常轻型飞机的初步设计阶段以较小的配置更改来降低开发成本和时间。

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