Solid-State Exergy Optimized Electric Aircraft Thermal and Fault Management

R. Dyson, L. Rodriguez, Mary Ellen Roth, P. Raitano
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引用次数: 5

Abstract

Future air vehicles will increasingly incorporate electrical powertrains that require very tight system level integration of power, propulsion, thermal, fault protection, and airframe technologies. This paper provides an overview of a new category of thermal energy conversion technology that can be used to enable a fully solid-state integrated thermal and fault management electric aircraft protection system, while synergistically managing and recycling both the low-grade waste heat from electrical components and the high-grade waste heat from engine components. This is achieved with exergy amplification of the powertrain waste-heat, a new class of fast flight-weight breakers, new class of long variable conductance heat pipe with multiple switchable condensers, new class of turbofan integrated heat exchangers and a gradient-based powertrain system optimizer.
固态火用优化电动飞机热与故障管理
未来的飞行器将越来越多地采用电气动力系统,这需要非常紧密的系统级集成,包括动力、推进、热、故障保护和机身技术。本文概述了一种新型热能转换技术,该技术可用于实现全固态集成热与故障管理电动飞机保护系统,同时协同管理和回收来自电气元件的低品位废热和来自发动机部件的高品位废热。这是通过对动力系统废热的火用放大、新型快速飞行重量断路器、新型带多个可切换冷凝器的长变导热管、新型涡扇集成热交换器和基于梯度的动力系统优化器来实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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