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首页> 外文期刊>International Journal of Heat and Mass Transfer >Study on emptyi ng-box problem with different inflow directions
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Study on emptyi ng-box problem with different inflow directions

机译:不同进水方向的空箱问题研究

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This study investigated the emptying-box problem with horizontal and vertical inflow directions. The salt-bath technique was used in simulation experiments with an acrylic reduced-scale model. The salt-bath technique uses salt water and fresh water to simulate the density difference between inside and outside fluids. The light-attenuation technique was used to analyze the experimental intensity data on the transient stratified flow. The experiments were categorized into two series based on the inflow direction: the horizontal inflow type emptying box EM(H) and the vertical inflow type emptying box EM(Ⅴ). The emptying process of EM(H) was observed to only involve emptying the dense layer, similar to the classical displacement flow. The emptying process of EM(Ⅴ) included emptying the dense layer and mixed layer. The results showed that the emptying times of EM(H) and EM(Ⅴ) decreased when either the total effective opening area or initial reduced gravity was increased. The time to empty the dense layer in the EM(Ⅴ) series was about 50-60% of that in the EM(H) series, and the total emptying time was much longer for the former series than for the latter series under the same conditions. Previous theoretical models were applied to both series and showed reasonable agreement with the experimental results. A new modified theoretical model for EM(Ⅴ) was developed and compared with the previous model. The new model demonstrated improved accuracy with regard to estimating the experimental evolution.
机译:这项研究调查了水平和垂直流入方向的排空箱问题。盐浴技术用于丙烯酸缩尺模型的模拟实验中。盐浴技术使用盐水和淡水来模拟内部和外部流体之间的密度差。用光衰减技术分析瞬态分层流的实验强度数据。根据流入方向将实验分为两个系列:水平流入型排空箱EM(H)和垂直流入型排空箱EM(Ⅴ)。观察到EM(H)的排空过程仅涉及排空致密层,类似于经典的位移流。 EM(Ⅴ)的排空过程包括排空致密层和混合层。结果表明,当总有效开口面积或初始减小的重力增加时,EM(H)和EM(Ⅴ)的排空时间减少。清空EM(Ⅴ)系列致密层的时间约为EM(H)系列中致密层的时间的50-60%,在相同的条件下,前一个系列的总清空时间要长于后者。条件。先前的理论模型被应用于两个系列,并显示出与实验结果合理的一致性。建立了一个新的改进的EM(Ⅴ)理论模型,并将其与以前的模型进行了比较。新模型在估计实验进展方面显示出更高的准确性。

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