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首页> 外文期刊>European Journal of Mechanics, B. Fluids >Entropy analysis of buoyancy driven gas-liquid two-phase flow: Analytical and experimental approaches
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Entropy analysis of buoyancy driven gas-liquid two-phase flow: Analytical and experimental approaches

机译:浮力驱动气液两相流的熵分析:分析和实验方法

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Buoyancy-driven two-phase flow is widely utilized in numerous applications, namely for pumping and transport of corrosive industrial liquids, and waste, muddy, or hot water containing sediments as in mining. This pumping method benefits the advantage of transporting unusual fluids that are not easily carried by conventional pumping systems. The airlift pump is one these buoyancy-driven pumping methods. An experimental entropy analysis of an airlift pump is presented in this work. The entropy generation of a pump plays a substantial role in its performance. Analysis of such gas-liquid systems is similar to the problem of modeling two-phase flows. The objective of the paper is to propose a comprehensive entropy analysis method that considers all the effective parameters involved in the entropy generation of an airlift pump, i.e. gas-wall and water-wall frictions, phase interactions, and losses due to relative velocities. A theoretical model is proposed, and entropy generation of the airlift pump is calculated in different submergence ratios, on the basis of experimental data. The results are then compared with those obtained from the authors' previous work, i.e. the thermodynamic approach. Finally, a complete investigation of the importance of each effective parameter is reported for different working conditions. It is concluded that the proposed model is capable of providing comparatively good values for the entropy generation on the basis of the design parameters like the phase flow rates, especially for the cases with submergence ratios above 0.5. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:浮力驱动的两相流被广泛用于许多应用中,即用于泵送和运输腐蚀性工业液体,以及采矿中含有沉积物的废物,泥泞或热水。这种泵送方法的优点是可以输送常规泵送系统难以携带的异常流体。气举泵是这些浮力驱动的泵送方法之一。这项工作提出了对空运泵的实验熵分析。泵的熵产生在其性能中起着重要作用。对这种气液系统的分析类似于对两相流进行建模的问题。本文的目的是提出一种综合的熵分析方法,该方法考虑了气举泵的熵产生所涉及的所有有效参数,即气壁和水壁摩擦力,相相互作用以及相对速度造成的损失。提出了一个理论模型,并根据实验数据计算了不同浸入率下气举泵的熵产。然后将结果与作者先前的工作(即热力学方法)获得的结果进行比较。最后,针对不同的工作条件,对每个有效参数的重要性进行了全面调查。结论是,所提出的模型能够根据设计参数(如相流量)为熵生成提供相对较好的值,特别是对于淹没率大于0.5的情况。 (C)2016 Elsevier Masson SAS。版权所有。

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