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A Systematic Methodology for Populating the Aircraft Thermal Management System Architecture Space

机译:一种填充飞机热管理系统架构空间的系统方法

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The aircraft thermal management system functions to provide suitable working conditions for pilot, crew, passengers, and the other aircraft systems. The additional weight, drag and power consumption caused by it greatly influences the performance of the aircraft. However, due to rising heat load of emerging novel aircraft concepts, traditional design approaches which rely on data and empirical equations may not apply to the future thermal management systems. Many existing literature which tried to identify the optimal thermal management system architectures only considered limited architecture space where the candidates were pre-selected in terms of experience or intuition. Therefore, viable but non-intuitive architectures may not be included in the design space. To fill this gap, this paper proposes a behavior-based backtracking methodology to systematically populate the architecture space by enumerating both intuitive and non-intuitive architectures. Thermal management requirements for traditional and novel configurations are used to generate the architectures. By comparing the generated architectures with existing ones, this paper validates that the proposed methodology is capable of generating both intuitive and non-intuitive architectures.
机译:飞机热管理系统为试点,船员,乘客和其他飞机系统提供合适的工作条件。由它引起的额外重量,阻力和功耗极大地影响了飞机的性能。然而,由于新兴的新型飞机概念的热负荷上升,依赖数据和经验方程式的传统设计方法可能不适用于未来的热管理系统。许多现有文献试图识别最佳热管理系统架构仅考虑有限的架构空间,其中在经验或直觉方面预先选择了候选者。因此,可行但非直观的架构可能不包括在设计空间中。为了填补这一差距,本文提出了一种基于行为的回溯方法,可以通过枚举直观和非直观的架构来系统地填充架构空间。传统和新配置的热管理要求用于生成架构。通过将生成的架构与现有的架构进行比较,本文验证了所提出的方法能够产生直观和非直观的架构。

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