首页> 外文期刊>Journal of Vibration and Acoustics >Effect of Bulkhead Pressurization on the Vibro-Acoustic Properties of an Aft-Fuselage-Mounted Twin-Engine Aircraft
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Effect of Bulkhead Pressurization on the Vibro-Acoustic Properties of an Aft-Fuselage-Mounted Twin-Engine Aircraft

机译:舱壁加压对后座式双引擎飞机振动声学特性的影响

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摘要

Despite widespread use of an aft-fuselage-mounted twin-engine aircraft in the business jet industry, a thorough investigation into the vibro-acoustic properties of this aircraft type has yet to be undertaken. Additionally, the effect of bulkhead pressurization on the vibro-acoustic properties of this aircraft fuselage has yet to be investigated in isolation. This work investigates the effect of bulkhead pressurization on two different designs of an aft-fuselage-mounted twin-engine aircraft: a single and a double bulkhead designs. A modal analysis, a harmonic frequency response analysis, and an acoustic response analysis were performed. A split bulkhead pressurization methodology was introduced as a means of improving structural performance without impacting passenger comfort levels in a double bulkhead aircraft. Modal coupling between components was seen to be the primary cause of increased cabin noise, peaking above 80 Hz. The bulkhead frequency response was highly dependent upon bulkhead pressurization, as the modal participation factors were significantly impacted by bulkhead pressurization. Therefore, the importance of understanding all bulkhead natural frequencies was highlighted, as the response changed as a function of bulkhead pressurization. Bulkhead resonance conditions generated a tone in the acoustic frequency response inside the passenger cabin, hishliehtins the importance of this component to passenger comfort levels.
机译:尽管在公务机行业中广泛使用了安装在机尾的双引擎飞机,但尚未对这种飞机的振动声特性进行彻底研究。此外,舱壁加压对这种飞机机身的声学特性的影响尚待单独研究。这项工作研究了舱壁加压对后机身安装双引擎飞机的两种不同设计的影响:单舱壁和双舱壁设计。进行了模态分析,谐波频率响应分析和声学响应分析。引入了分开的舱壁加压方法,以作为在不影响双舱壁飞机的乘客舒适度的前提下改善结构性能的一种方法。组件之间的模态耦合被认为是增加机舱噪声的主要原因,峰值噪声超过80 Hz。舱壁频率响应高度依赖于舱壁增压,因为模态参与因子受到舱壁增压的显着影响。因此,强调了理解所有舱壁固有频率的重要性,因为响应随舱壁增压而变化。舱壁共振条件在乘客舱内的声频响应中产生了一个音调,这说明该组件对乘客舒适度的重要性。

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