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Heat transfer characteristics of a novel closed-loop pulsating heat pipe with a check valve

机译:具有止回阀的新型闭环脉动热管的传热特性

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A spring-loaded check valve controlling the one-way circulatory flow of the working fluid was integrated into an initial closed-loop pulsating heat pipe (CLPHP) to improve the thermal performance. The thermal performance of the CLPHP with a spring-loaded check valve (CLPHP/CV) was experimentally investigated and compared to the initial CLPHP. The initial CLPHP was made of a copper capillary tube with an inner diameter of 3 mm and ten spiral loops. The spring-loaded check valve was integrated into two locations in the initial CLPHP: between the two heating (CLPHP/CVh) sections and the two cooling (CLPHP/CVO sections. Tests were conducted under three orientations: bottom, horizontal, and top heating modes. The CLPHP was charged with deionized water as the working fluid with a filling ratio of 60% by volume. The experimental results show that the check valve creates a one-way circulatory flow of the working fluid and facilitates the start-up of the CLPHP. A 25% decrease in thermal resistance of the CLPHP/CV is achieved compared with the initial CLPHP under top heating mode at a low heating load. Moreover, the check valve decreases the sensitivity of the CLPHP to its orientation, particularly when the check valve is integrated between the two heating sections.
机译:控制工作流体的单向循环流量的弹簧止回阀集成到初始闭环脉动热管(CLPHP)中以提高热性能。通过实验研究了具有弹簧式止回阀(CLPHP / CV)的CLPHP的热性能并与初始克隆相比。初始CLPH由铜毛细管制成,内径为3mm和十个螺旋环。加载弹簧止回阀集成到初始CLPPP中的两个位置:两个加热(CLPHP / CVH)部分和两个冷却(CLPHP / CVO部分。测试是在三个方向下进行:底部,水平和顶部加热模式。CLPHP用去离子水作为工作流体,填充比为60%,实验结果表明,止回阀产生了工作流体的单向循环流动,有助于启动CLPHP。在低加热负荷下与顶部加热模式下的初始CLPPP相比,实现了CLPHP / CV的热阻的25%的降低。此外,止回阀将CLPHP的灵敏度降低到其方向,特别是当检查时阀门集成在两个加热部分之间。

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