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Evaluation of embedded windshield resonators to reduce cabin noise of a UAM concept aircraft

机译:嵌入式挡风玻璃谐振器的评估减少UAM概念飞机的驾驶室噪声

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High cabin noise levels in UAM vehicles could affect passenger comfort and thus passenger acceptance of this class of aircraft. As windshields will likely comprise a large percentage of the surface area of a UAM aircraft fuselage, the objective of this work was to explore the feasibility of a noise reduction concept that utilizes the windshield area. The concept aims to increase interior absorption at targeted frequencies by assuming that a honeycomb-like array of interior facing acoustic resonators are embedded within multiple transparent layers that make up the front and side windshields. The vehicle considered was based on the NASA RVLT Lift+Cruise UAM concept, which has 7.2 m~2 of front- and side-facing windshields. Statistical Energy Analysis was used to evaluate the noise reduction attributed to the inclusion of various resonator configurations. The predicted noise reduction was dependent on the resonator geometry, the quantity of resonators included, and the assumed baseline interior cabin absorption. Results from a variety of resonator configurations are shown and discussed. The optical feasibility of the concept is not discussed in this work.
机译:UAM车辆的高机舱噪音水平可能会影响乘客舒适性,从而影响这类飞机的乘客接受。由于挡风玻璃可能包括UUM飞机机身的大量百分比,这项工作的目的是探讨利用挡风玻璃区域的降噪概念的可行性。该概念旨在通过假设面向声谐振器的蜂窝状的内部阵列嵌入构成前部和侧挡风玻璃的多个透明层内,增加目标频率的内部吸收。所考虑的车辆基于NASA RVLT升降机+巡航UAM概念,其前面和侧面挡风玻璃中有7.2米〜2。统计能量分析用于评估归因于包括各种谐振器配置的噪声降低。预测的降噪取决于谐振器几何形状,包括谐振器的数量,以及假设的基线内部舱室吸收。示出并讨论了各种谐振器配置的结果。在这项工作中没有讨论该概念的光学可行性。

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