Structural Batteries in Aviation: A Preliminary Sizing Methodology

尺寸 机身 推进 电力航天器推进 航空 汽车工程 工程类 电池(电) 机械工程 功率(物理) 航空航天工程 量子力学 物理 艺术 视觉艺术
作者
Carlo E.D. Riboldi,Lorenzo Trainelli,Fabio Biondani
出处
期刊:Journal of Aerospace Engineering [American Society of Civil Engineers]
卷期号:33 (4) 被引量:35
标识
DOI:10.1061/(asce)as.1943-5525.0001144
摘要

A significant research effort in aviation is currently focused on the integration of electric or hybrid-electric power-trains onboard aircraft in an effort to improve efficiency and environmental friendliness. New designs incorporating these novel propulsion systems face the issue of penalizing battery characteristics, especially in terms of limited energy and power density performance, in turn imposing a toll on the inert weight of the machine. A possible solution to this issue is that of structural batteries. These are similar in structure to carbon fiber composites, where the matrix features dielectric characteristics, making the structure capable of storing electric energy while retaining the capability to withstand mechanical loads. The adoption of this technology, currently under advanced development, shall enable significant weight savings; yet it also raises relevant issues concerning aircraft sizing procedures that need to be conceived taking into account the specific characteristics of such multifunctional materials. This paper faces the new problem of aircraft initial design in presence of structural batteries. First, it presents a method for aircraft preliminary weight sizing, where the double effect of structural batteries on both structural mass and energy storage mass is considered. Subsequently, a procedure to size an airframe structure with the adoption of structural batteries in key components is shown, based on a weight-optimal approach. The complete sizing procedure is illustrated through an award-winning test case in the General Aviation category.
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