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首页> 外文期刊>International Journal of Heat and Mass Transfer >An experimental investigation of a three-dimensional flat-plate oscillating heat pipe with staggered microchannels
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An experimental investigation of a three-dimensional flat-plate oscillating heat pipe with staggered microchannels

机译:具有交错微通道的三维平板振荡热管的实验研究

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摘要

Using water or acetone as the working fluid, the thermal performance of a three-dimensional flat-plate oscillating heat pipe (3D FP-OHP) with staggered microchannels was experimentally investigated by varying heating area, cooling temperature and operating orientation. It was found that when the heating area is larger at the same input power, the heat pipe is less orientation-dependent When the heating area was decreased, to form a localized heating condition and higher heat flux, the thermal resistance and peak-to-peak amplitudes of temperature oscillations in the evaporator increased. The utilization of water as the working fluid generally provided the lowest thermal resistance for all experimental conditions investigated, but - unlike acetone - resulted in more severe temperature fluctuations in the evaporator during localized heating. The 3D FP-OHP, with overall dimensions of 130.18 x 38.10 x 2.86 mm3, demonstrated to efficiently manage heat fluxes as high as approximately 300 W/cm2 at a total heat load of 300 W.
机译:以水或丙酮为工作流体,通过改变加热面积,冷却温度和工作方向,对带有交错微通道的三维平板振荡热管(3D FP-OHP)的热性能进行了实验研究。发现在相同输入功率下加热面积较大时,热管的取向依赖性较小。当减小加热面积时,形成局部加热条件和较高的热通量时,热阻和峰峰值蒸发器中温度振荡的峰值幅度增加。在所有研究的实验条件下,使用水作为工作流体通常提供最低的热阻,但与丙酮不同,在局部加热期间,蒸发器中的温度波动更大。 3D FP-OHP的总体尺寸为130.18 x 38.10 x 2.86 mm3,在总热负荷为300 W时,可有效管理高达300 W / cm2的热通量。

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