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Ultra-high thermal conductivity of three-dimensional flat-plate oscillating heat pipes for electromagnetic launcher cooling

机译:用于电磁发射器冷却的三维平板振荡热管的超高导热率

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Bore components within electromagnetic launchers (EMLs) experience very high heating rates during and after the shot of a projectile. This is a challenge for the next-generation EML which will shoot projectiles repetitively within a specified time frame. Direct integration of three-dimensional flat-plate oscillating heat pipes (3D FP-OHPs) for thermal management of EML bore components is proposed. Unlike conventional heat pipes, the 3D FP-OHP contains no wick structure and can operate at higher heat fluxes with fewer limitations. Proof-of-concept experiments were performed on a copper 3D FP-OHP (130.18 mm × 38.10 mm × 2.86 mm) filled with HPLC-grade water at a filling ratio of 72%. The 3D FP-OHP was found to have an effective thermal conductivity that increased with heat input - approaching 15,000 W/m-K at heat inputs on-the-order of 0.3 kW. This experimentally-determined thermal conductivity was used for numerically analyzing the thermal performance of a longer 3D FP-OHP configured for axial EML thermal management. These results indicate that the high thermal conductivity of 3D FP-OHP coupled with an external, active cooling solution (h ∼ 50,000 W/m2-K) can provide for peak heat transfer rates on-the-order of 10 kW. Based on these results, the 3D FP-OHP is appealing for future EML thermal management solutions, however significant work is required for their optimal integration.
机译:电磁发射器(EML)中的孔组件在发射子弹期间和之后经历很高的加热速率。对于下一代EML来说,这是一个挑战,它将在指定的时间范围内反复发射弹丸。提出了直接集成用于EML孔组件热管理的三维平板振荡热管(3D FP-OHP)。与传统的热管不同,3D FP-OHP不包含灯芯结构,并且可以在较高的热通量下运行而不受限制。在以HPLC级水填充率为72%的铜3D FP-OHP(130.18毫米×38.10毫米×2.86毫米)上进行了概念验证实验。发现3D FP-OHP具有有效的导热系数,该导热系数随热量输入而增加-在热量输入为0.3 kW时接近15,000 W / m-K。实验确定的导热系数用于数值分析配置用于轴向EML热管理的较长3D FP-OHP的热性能。这些结果表明,将3D FP-OHP的高热导率与外部主动冷却溶液(h〜50,000 W / m 2 -K)结合使用,可以提供最佳的传热速率。约10 kW。基于这些结果,3D FP-OHP对于将来的EML热管理解决方案具有吸引力,但是要实现其最佳集成还需要大量工作。

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