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Experimental study on onset of nucleate boiling and flow boiling heat transfer in a 5 × 5 rod bundle at low flow rate

机译:低流速下5×5杆束核沸腾和流沸热传热的试验研究

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Onset of nucleate boiling and flow boiling heat transfer are experimentally investigated in a 5 x 5 rod bundle at low flow rate under the pressure of 6 MPa. The experimental mass flux ranges from 25 to 200 kg/m(2) s, heat flux varies from 25 to 75 kW/m(2), the maximum vapour quality is 0.45. Effects of parameters on ONB and flow boiling are examined. The wall superheating at ONB point increases with the rise of heat flux while decreases with the increase of mass flux. The effects of mass flux and quality on flow boiling heat transfer coefficients are not distinct. For both subcooled and saturated flow boiling in the 5 x 5 rod bundle, the effect of heat flux on heat transfer is more remarkable at high flow rate than at low flow rate. Comparisons between predictions by existing empirical correlations and the experimental data are conducted. Basu's correlation could predict the wall superheating at ONB point within a deviation less than 30% under conditions of higher mass flux (150 kg/m(2) s). As for the comparisons in flow boiling regions, predictions by Chen's correlation agree well with the experimental data in both sub cooled and saturated regions, except under conditions of low mass flux with low heat flux. Most of the correlations for boiling heat transfer and ONB are derived from the experimental data obtained at high flow rate, however, current experiments indicate that these correlations cannot be directly used under low flow rate conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在5×5杆束下以6MPa的压力下的低流速在实验中研究了核心沸腾和流沸热传递的发病。实验质量磁通量为25至200kg / m(2)秒,热通量从25〜75 kW / m(2)变化,最大蒸汽质量为0.45。检查参数对ONB和流沸石的影响。随着热量通量的升高,壁上的壁在随着热量通量的增加而增加,而随着质量磁通量的增加而降低。质量通量和质量对流沸热转移系数的影响并不明显。对于在5×5杆束中沸腾的两个过脱机和饱和流动,热量通量对热传递的影响比以低流速的高流速更显着。通过现有经验相关性与实验数据的预测与实验数据之间的比较。 Basu的相关性可以在较高质量通量(> 150kg / m(2)S)的条件下,在小于30%的偏差内的壁上的壁在偏差范围内。至于流沸荡区域的比较,陈氏相关性的预测与亚冷却和饱和区域中的实验数据相吻合,除了低热量通量的低质量通量的条件之外。大多数用于沸腾热传递和ONB的相关性来自高流速获得的实验数据,然而,电流实验表明这些相关性不能直接在低流速条件下使用。 (c)2019 Elsevier Ltd.保留所有权利。

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