Abstract Unconventional hybrid airships design optimization accounting for added masses
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Unconventional hybrid airships design optimization accounting for added masses

机译:考虑到增加质量的非常规混合飞艇设计优化

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AbstractThis paper describes the implementation of a framework which can be used to optimize the external shape of an unconventional airship configuration. This framework includes the estimation of Added Masses (AM) which captures the contribution of the dynamic effect related to the acceleration of a body immersed in a fluid having a similar density to that of the body itself. A computationally efficient routine to compute AM has been implemented in a heuristic optimization loop based on a Particle Swarm Optimization (PSO) algorithm, and has been integrated into a simple model which provides hybrid airship's aerodynamics characteristics. As a case study, the take-off distance of a hybrid airship has been optimized by the methodology, and it is used to show the effect on the optimization loop and the errors arising from using conventional approximated AM evaluation methods. The proposed set of simulations clearly evaluates the errors expected on the unconventional airships performances when approximated methods are used in the evaluation of the AM.
机译: 摘要 本文介绍了一个框架的实现,该框架可用于优化非常规飞艇配置的外形。该框架包括附加质量(AM)的估算,该估算可捕获与浸没在密度与人体自身密度相似的流体中的人体加速度有关的动态效应的贡献。基于粒子群优化(PSO)算法的启发式优化循环中已实现了一种计算效率高的计算AM的例程,该例程已集成到提供混合飞艇的空气动力学特性的简单模型中。作为案例研究,混合飞艇的起飞距离已通过该方法进行了优化,并用于显示对优化回路的影响以及使用常规近似AM评估方法所产生的误差。当采用近似方法进行AM评估时,拟议的模拟方法可以清楚地评估非常规飞艇性能预期的误差。

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