A parametric design approach for multi-lobed hybrid airships

M. Manikandan, R. R. Shah, P. Priyan, B. Singh, R. Pant
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Abstract

In recent years, there has been an increasing interest in the research and development of hybrid airships for various applications. Airship design involves multiple design parameters from various disciplines that interact mutually. Existing design methodologies, however, are often limited to fixed shapes and geometry. This paper provides a comprehensive parametric design approach for the sizing of multi-lobed hybrid air vehicles for low- and high-altitude applications. The proposed design techniques are robust so that the designer has the freedom to change the number of lobes, the relative location of lobes, the envelope profile, and the optimiser for the design optimisation process. The outcomes of the proposed methodology are envelope volume, wetted surface area, length and span of the envelope, sizing and layout of the solar array, and sizing and layout of the fins. The modeling techniques highlighted in this paper are very efficient for the design and optimisation of multi-lobed airships in the conceptual design phase with a large design exploration space. The robustness of the shape generation algorithms is tested on some of the standard envelope profiles of airships. The effect of the shape and geometry of the multi-lobed envelope on added mass is demonstrated through the added mass estimation using Boundary Element Method.
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多叶混合动力飞艇的参数化设计方法
近年来,人们对混合动力飞艇的研究和开发越来越感兴趣。飞艇设计涉及多个学科的设计参数,这些参数相互影响。然而,现有的设计方法往往局限于固定的形状和几何形状。本文为低空和高空多叶混合动力飞行器的尺寸设计提供了一种综合参数化设计方法。所提出的设计技术具有鲁棒性,因此设计人员可以自由地改变叶的数量、叶的相对位置、包络线轮廓和设计优化过程的优化器。所提出的方法的结果是包络体积,湿表面积,包络的长度和跨度,太阳能电池阵列的尺寸和布局,以及鳍的尺寸和布局。本文所强调的建模技术对于多叶飞艇在概念设计阶段的设计和优化是非常有效的,并且具有较大的设计探索空间。在一些飞艇的标准包络轮廓上验证了形状生成算法的鲁棒性。通过边界元法的附加质量估计,论证了多叶包络的形状和几何形状对附加质量的影响。
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