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◆ Applied Thermal Engineering2026-02-04· Transient (computer programming)

Transient investigation of a parallel vapor compression cycle for electric aircraft

Marius Nozinski, Theresa Kramer, Johannes Sprenger, Yixa Xu, Christiane Thomas, Stephan Kabelac

原始摘要(英文原文)· Original abstract
The aviation industry faces the challenge of balancing emission reduction with the increasing demand for passenger flights. Electric aircraft offer a promising solution by eliminating emissions during flight, but their components necessitate an efficient thermal management system to achieve the restricted operating temperatures. A vapor compression cycle presents a viable approach to maintain component temperatures near or below ambient levels, even at hot ground-level temperatures. By using parallel evaporators directly connected to the electric components, multiple heat sources across an aircraft can be addressed. Despite its potential, the impact of such a system on aircraft performance remains unexplored, representing a crucial research area for future aircraft generations. To investigate this, an experimental test rig has been constructed to demonstrate the cooling system’s feasibility with the refrigerant R1336mzz(Z) and to validate a transient simulation model in MATLAB Simulink. The effect of additional drag, mass, and power consumption is analyzed over a flight mission. All factors are combined into a single objective parameter - the additional thrust requirement of the aircraft - derived from flight physics. The vapor compression cycle consistently outperforms a comparable liquid cooling cycle for all examined maximum component temperatures up to 70 ° C . A temperature lift of 40 K is identified as optimal, minimizing drag and outweighing the power increase due to the compressor. The studied vapor compression cycle achieves an airflow-dependent cooling capacity of up to 60 kW kg -1 s and a mass-dependent cooling capacity of 0 . 6 kW kg -1 , highlighting its effectiveness and potential for enhancing electric aircraft performance.
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Transient investigation of a parallel vapor compression cycle for electric aircraft — 科研速览 Science Skim