Energy Conversion and Management· 2026Q1
Pullu Kanatlı Fiber Termal Diyot Yüksek Yönlü Isı Transferi Sağladı
Fabrication and performance characterization of a phase-change thermal diode using scaly-finned fibers as the wick
- 1atıf
- Q1SCImago
- 2026yıl
Kısa özet
Pullu kanatlı fiberler kullanılarak üretilen yeni bir faz değişimli termal diyot, %40 dolum oranında maksimum 0.56 ± 0.03 termal doğrultma katsayısı ve 4858 ± 369 W/(m·K) etkin termal iletkenlik elde etti.
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Özet (abstract)
Efficient unidirectional heat transfer is of paramount importance in applications such as satellite thermal control systems and large-scale data centers, where conventional phase-change heat transfer devices exhibit inherent limitations. In this study, a novel phase-change thermal diode was proposed for unidirectional and self-driven thermal management. Fiber wick structure featuring periodic oblique scaly fins and unidirectional self-driven liquid transport capability was fabricated via multi-tooth cutting process and high-temperature solid-state sintering method, and was then encapsulated to construct phase-change thermal diodes. The steady-state heat transfer performance, unidirectional heat transfer characteristic, and adverse-gravity capability of the thermal diodes were evaluated by adjusting the filling ratio, heating power, and operating conditions. Experimental results revealed that a lower filling ratio correlated with higher effective thermal conductivity and enhanced unidirectional heat transfer performance, among the tested devices under horizontal operating conditions and filling ratio range of 40% to 60%. Specifically, a maximum thermal rectification coefficient of 0.56 ± 0.03 with the thermal conductivity of 4858 ± 369 W/(m·K) was achieved at a filling ratio of 40%. Under adverse-gravity conditions, the maximum effective thermal conductivity was reduced, and the unidirectional heat transfer capability was retained but weakened at low filling ratios. The tested phase-change thermal diodes exhibit high effective thermal conductivity and appreciable thermal rectification, suggesting potential for advanced thermal management applications.
Yazarların özeti; kaynağından alınmıştır. Energy Conversion and Management, 2026 · DOI ↗
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