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Experimental study of jet impingement boiling cooling with CO_2 at subcritical pressures and comparisons with at supercritical pressures

机译:亚临界压力下CO_2与超临界压力比较的射流冲击冷却的实验研究

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Two-phase jet impingement cooling with carbon dioxide at subcritical pressures of 6.5 and 7.0 MPa (near-critical pressure) on smooth surface was experimentally studied in this paper. Local heat transfer coefficients were measured with a homemade integrated thermal chip. The effects of heat flux, pressure and mass flow rate on heat transfer were studied. Coexistence of single-phase and two-phase heat transfer on the cooled surface was observed through flow visualization. The heat transfer coefficient increased with the increase of mass flow rate within the single-phase heat transfer region and then became in-sensitive to mass flow rate when boiling initiated on the cooled surface. No temperature overshoot was observed when boiling initiated due to the much-reduced latent heat of the fluid at near-critical pres-sures. Moreover, the heat transfer characteristics of jet impingement cooling at subcritical pressures were compared with that at supercritical pressures of the same experimental conditions both on smooth and micro-structured surfaces for a wide range of heat flux. The comparison showed that the heat transfer enhancement resulting from phase change at subcritical pressures was much higher than that resulting from large specific heat at supercritical pressures. However, CHF can be avoided for jet impingement cool-ing at supercritical pressure and the heat transfer rate of it was greatly enhanced on the surfaces with micropillar structures.
机译:在本文实验研究了在亚临界压力下,在亚临界压力下用二氧化碳进行二相喷射冷却,在6.5和7.0MPa(近临界压力)上进行了实验研究。用自制集成热芯片测量局部传热系数。研究了热通量,压力和质量流速对热传递的影响。通过流动可视化观察到在冷却表面上的单相和两相热传递的共存。传热系数随着单相传热区域内的质量流速的增加而增加,然后在冷却表面上发起沸腾时对质量流速变得有敏感。由于近乎关键的PreS-sures的液体的潜热性大大降低,在沸腾时,不会观察到温度过冲。此外,亚临界压力下喷射冲击冷却的传热特性与在相同的实验条件的超临界压力,在光滑和微结构的表面上,用于各种热通量。比较表明,由于亚临界压力下的相变产生的热传递增强远高于超临界压力下大的比热量。然而,对于在超临界压力下的喷射冲击冷却,可以避免CHF,并且在具有微小池结构的表面上大大增强了热传递速率。

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