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UNSTRUCTURED LARGE EDDY SIMULATION TECHNOLOGY FOR PREDICTION AND CONTROL OF JET NOISE

机译:非结构化大涡模拟预测与控制

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Development of concepts for reduction of jet noise has relied heavily on expensive experimental testing of various nozzle designs. For example, the design of nozzle serrations (chevron) and internal mixer/ejector nozzles have relied largely on laboratory and full-scale testing. Without a deeper understanding of the sources of high-speed jet noise it is very difficult to effectively design configurations that reduce the noise and maintain other performance metrics such as nozzle thrust. In addition, the high complexity of the flow limits the success of a parametric black-box optimization.
机译:减少喷射噪声的概念的发展在很大程度上依赖于各种喷嘴设计的昂贵的实验测试。例如,喷嘴锯齿(人字形)和内部混合器/喷射器喷嘴的设计在很大程度上依赖于实验室和全面测试。如果不对高速喷射噪声的来源有更深入的了解,就很难有效地设计出降低噪声并保持其他性能指标(例如喷嘴推力)的配置。另外,流程的高复杂性限制了参数黑盒优化的成功。

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