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A Methodology for Predicting Solar Power Incidence on Airfoils and their Optimization for Solar Powered Airplanes

机译:一种预测翼型太阳能发电的方法及其对太阳能飞机的优化

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Since the recognition of the influence of human activity on climate change due to increasing use of fossil fuel energy, significant efforts are being devoted towards the development and implementation of renewable energy technologies that are harmless to the environment. One of the abundant energy sources is the sun. There are currently two primary ways of harvesting energy from the sun: through photovoltaic (PV) panels and through thermal collectors. With the evolution of unmanned air vehicles (UAV), as well as the growing interest in "Green Aviation," the interest in investigating the usage of PV solar panels in certain category of aircrafts has increased in the last two decades. In a small UAV or low speed personal transportation aircraft, the wings of the airplane could possibly be covered with photovoltaic panels to harness sun's energy for propulsion. Most notably the success of "Solar Impulse" airplane has attracted the attention of general public as well as small aircraft enthusiasts. In this paper, we analyze the incidence of solar radiation over an airfoil/wing of an airplane. We show that, under some conditions, the incidence is independent of the shape of the airfoil. We develop a more complete model to compute the total solar radiation incident on the airfoil during a cruise flight using the solar tracking equations and geodesy for path creation. The model is based on the discretization of both the airfoil and the path. To illustrate the versatility of the model, we employ a genetic algorithm with migration to optimize the airfoil shape during some specific given flight conditions and discuss the results.
机译:由于对人类活动对由于越来越多的化石燃料能源的影响来识别人类活动的影响,因此正在致力于开发和实施对环境无害的可再生能源技术的开发和实施。一个丰富的能源是太阳。目前有两种主要方法可以从太阳中收集能量:通过光伏(PV)面板和通过热收集器。随着无人驾驶航空公司(UAV)的演变,以及对“绿色航空”的兴趣日益增长,“在过去的二十年中,在某些范畴的飞机上调查使用光伏太阳能电池板的利益增加。在小无人机或低速个人运输飞机中,飞机的翅膀可能覆盖着光伏电池板,以利用太阳的能量来推进。最特别的是“太阳能冲动”飞机的成功引起了公众的关注以及小型飞机爱好者。在本文中,我们分析了飞机翼型/翼的太阳辐射的发生率。我们表明,在某些条件下,发病率与翼型的形状无关。我们开发了一个更完整的模型,在游轮航班期间使用太阳能跟踪方程和径路径的巡航飞行来计算翼型上的总太阳辐射。该模型基于翼型和路径的离散化。为了说明模型的多功能性,我们采用了一种遗传算法,迁移迁移,以在一些特定的给定飞行条件下优化翼型形状并讨论结果。

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