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Some aspects of critical-heat-flux enhancement in tubes

机译:管中临界热通量增强的某些方面

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This paper summarizes the effects of various types or numebers of critical-heat-flux (CHF)-enhancing inserts in tubular geometries. The impact of inserts on CHF is frequently expressed by an enhancement ratio K: the ratio of CHF with an insert to the CHF in a bare tube for the same local flow conditions. The impact on K of the following parameters was investigated: (i) fluid type (Freon-134a, water), (ii) axial spacing between inserts, (iii) shape of the insert, (iv) flow blockage of the insert, (v) number of similar/dissimilar insert planes upstream, and (vi) impact of flow conditions. The spacing and flow-obstruction area were found to be the major geometric factors that affected K: by decreasing the relative spacing, L/D, to 16, K can reach a value of from 2 to 3, depending on the flow-obstruction area. Among flow parameters, the critical quality, x_c, usually has a strong effect on K: K can increase from a value of 1 to 3, when x_c increases from 0 to 0.4 for a mass flux G>= 2 Mg/m~2s. For G < 2 Mg/m~2s, CHF enhancement can disappear or become negative (K < 1). No cumulative effect was found on K for a series of upstream insert planes. CHF enhancement does not depend on fluid type, provided that the conditions in the fluids meet the CHF fluid-to-fluid modelling requirements.
机译:本文总结了管状几何形状中各种类型或数量的临界热通量(CHF)增强刀片的影响。插入件对CHF的影响通常用增强比K表示:在相同的局部流动条件下,带有插入件的CHF与裸管中的CHF之比。研究了以下参数对K的影响:(i)流体类型(Freon-134a,水),(ii)镶块之间的轴向间距,(iii)镶块的形状,(iv)镶块的流动阻塞,( v)上游相似/不相似的插入平面的数量,以及(vi)流动条件的影响。发现间距和阻流面积是影响K的主要几何因素:通过将相对间距L / D减小到16,K可以达到2到3的值,具体取决于阻流面积。在流量参数中,临界质量x_c通常对K有很强的影响:对于质量通量G> = 2 Mg / m〜2s,当x_c从0增加到0.4时,K可以从1增大到3。对于G <2 Mg / m〜2s,CHF增强可能消失或变为负值(K <1)。对于一系列上游插入平面,在K上未发现累积效应。 CHF增强不取决于流体类型,只要流体中的条件满足CHF流体到流体建模要求即可。

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