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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Infrared thermography of a pulsating heat pipe: Flow regimes and multiple steady states
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Infrared thermography of a pulsating heat pipe: Flow regimes and multiple steady states

机译:脉动热管的红外热成像:流动状态和多个稳态

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Understanding of the operational characteristics of a closed loop Pulsating Heat Pipe (PHP) with non-intrusive spatial and temporal measurement of tube wall temperature by high resolution infra-red thermography (IRT) has been attempted in this work. The PHP is made of a copper capillary tube of internal diameter of 2.0 mm and has eight turns each in the evaporator and condenser section. It is operated in vertical heater down position with water as the working fluid. The local temperature field of the PHP surface is measured by IRT while a micro-thermocouple is used to measure the local fluid temperature. IRT field information throws light on several important operational features and helps, not only to correlate the temperature foot-print with thermal performance but also to qualitatively identify the internal flow characteristics as the heat power input to the system is increased. The PHP displays different flow behaviour, viz., no-flow, intermittent oscillatory flow, oscillatory flow with bulk circulation, with corresponding unique thermal performance. In addition, this study clearly reveals that PHPs exhibit multiple steady states at intermediate heat input powers. While this phenomenon has been observed for single-loop PHP system earlier, it is reported here for the first time in a multi-turn device. The overall thermal resistance of the device decreases from ~1.90 K/W to 0.24 K/W, with increasing input heat power from 30 W to 500 W. The overall thermal performance of the device makes is quite an attractive solution for many potential high heat flux thermal management applications.
机译:试图通过高分辨率红外热像仪(IRT)进行具有非侵入式的时空测量管壁温度的闭环脉动热管(PHP)的操作特性。 PHP由内径为2.0 mm的铜毛细管制成,在蒸发器和冷凝器部分各有八匝。在垂直加热器向下的位置,以水为工作液进行操作。 PHP表面的局部温度场通过IRT测量,而微热电偶用于测量局部流体温度。 IRT现场信息将重点介绍几个重要的操作功能,不仅有助于将温度足迹与热性能相关联,而且可以随着输入系统热量的增加而定性地识别内部流动特性。 PHP显示不同的流动特性,即无流动,间歇性振荡流动,具有整体循环的振荡流动,以及相应的独特热性能。此外,这项研究清楚地表明,PHP在中等热量输入功率下表现出多种稳态。虽然较早在单循环PHP系统中已观察到此现象,但在多匝设备中首次报道此现象。随着输入热功率从30 W增加到500 W,该设备的整体热阻从〜1.90 K / W降低至0.24 K / W。该设备的整体热性能对于许多潜在的高热量而言是非常有吸引力的解决方案助焊剂热管理应用。

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