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Application of an Aircraft Design-To-Noise Simulation Process

机译:飞机噪声设计仿真过程的应用

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System noise has been integrated as an additional design objective within conceptual aircraft design. The DLR system noise prediction tool PANAM accounts for individual noise sources depending on their geometry and operating conditions. PANAM is integrated into the existing aircraft design framework PrADO from the Technical University of Braunschweig in order to realize a design-to-noise simulation process. In addition, a ray-tracing tool from DLR, SHADOW, is incorporated into the simulation framework in order to account for structural engine noise shielding. The overall simulation process is then applied to identify promising low-noise aircraft concepts. The presented application aims at fan noise reduction through shielding. For the selected reference aircraft, the fan is a major noise source during both landing and takeoff. It is demonstrated, that the aircraft designers influence on the environmental vehicle characteristics is significant at the conceptual design phase. Usually, a trade-off between extensive engine noise shielding and economical flight performance is inevitable. The new design-to-noise process is well suitable to assess all four measures of ICAOs balanced approach.
机译:系统噪声已被集成为概念飞机设计中的附加设计目标。 DLR系统噪声预测工具PANAM会根据单个噪声源的几何形状和运行条件来对其进行说明。 PANAM已集成到不伦瑞克工业大学的现有飞机设计框架PrADO中,以实现从设计到噪声的仿真过程。此外,DLR的光线追踪工具SHADOW被并入了仿真框架,以解决结构性发动机噪声屏蔽问题。然后,将整个模拟过程应用于确定有前途的低噪声飞机概念。提出的应用旨在通过屏蔽来降低风扇噪声。对于选定的参考飞机,风扇是着陆和起飞期间的主要噪声源。结果表明,飞机设计人员在概念设计阶段对环境车辆特性的影响是重大的。通常,在广泛的发动机噪音屏蔽和经济的飞行性能之间进行折衷是不可避免的。新的噪声设计程序非常适合评估国际民航组织平衡方法的所有四项措施。

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