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FROM PRELIMINARY AIRCRAFT CABIN DESIGN TO CABIN OPTIMIZATION - PART I

机译:从飞机的初步设计到机舱优化-第一部分

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This paper conducts an investigation towards main aircraft cabin parameters. The aim is two-fold: First, a handbook method is used to preliminary design the aircraft cabin. Second, an objective function representing the "drag in the responsibility of the cabin" is created and optimized using both an analytical approach and a stochastic approach. Several methods for estimating wetted area and mass are investigated. The results provide optimum values for the fuselage slenderness parameter (fuselage length divided by fuselage diameter) for civil transport aircraft. For passenger aircraft, cabin surface area is of importance. The related optimum slenderness parameter should be about 10. Optimum slenderness parameters for freighters are lower: about 8 if transport volume is of importance and about 4 if frontal area for large items to be carried is of importance. These results are published in two parts. Part I includes the handbook method for preliminary designing the aircraft cabin. Part II includes the results of the optimization and the investigations of the wetted areas, masses and "drag in the responsibility of the cabin".
机译:本文对主要飞机机舱参数进行了调查。目的有两个:首先,使用手册方法初步设计飞机机舱。其次,使用分析方法和随机方法创建和优化表示“拖延机舱责任”的目标函数。研究了几种估计润湿面积和质量的方法。结果为民用运输机的机身细长度参数(机身长度除以机身直径)提供了最佳值。对于客机,机舱表​​面积很重要。相关的最佳细长度参数应为10。货轮的最佳细长度参数较低:如果运输量很重要,则大约为8;如果要运送大件物品的正面区域,则为大约4。这些结果分为两个部分。第一部分包括初步设计飞机机舱的手册方法。第二部分包括优化的结果以及对潮湿区域,质量和“驾驶室责任的拖延”的调查。

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