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Algorithms for determination of the vector velocity field in a two-phase gas-liquid flow

机译:两相气体流动中载体速度场测定的算法

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Energy efficiency is a key issue of sustainable development. During the design of industrial devices, it strives to achieve the highest possible energy efficiency. In the industrial systems, two-phase flow is a difficult task, especially the prediction and maintenance of the two-phase flow regime. That is why this research proposes the evaluation and choice of an algorithm that will give a hint of the device design for which the hydrodynamic conditions of the two-phase mixture flow may be evaluated. The tests were carried out in a rectangular vertical narrow channel, as this type of device is in common use. The work aimed to show which algorithm is better for such evaluation. Parameters such as pressure drop, heat, mass, and momentum transfer are influenced by the phase velocity field. Still, various models are used for the determination of the velocity field. Therefore there is a problem of choosing a model that will give the results closest to the real conditions. Flow visualization gives the noninvasive determination of the actual velocity field. An analysis of the velocity field was performed, which showed that for different two-phase flow regimes there are differences for given algorithms. The following algorithms were used to determine the velocity vector field: Adaptive Correlation Method and Adaptive Particle Image Velocity Method were used which are the parts of the general Digital Particle Image Velocimetry. The determination of the velocity fields in the quantitative and qualitative assessment of a given two-phase flow regime was obtained. The result of the research is the evaluation of algorithms for characterization two-phase gas-liquid flow.
机译:能源效率是可持续发展的关键问题。在工业设备的设计期间,它努力实现最高的能源效率。在工业系统中,两相流是一项艰巨的任务,尤其是两相流动制度的预测和维护。这就是本研究提出了一种算法的评估和选择,该算法将提供一种暗示可以评估两相混合物流程的流体动力学条件的装置设计的暗示。测试在矩形垂直窄通道中进行,因为这种类型的装置是常用的。旨在显示哪种算法的评估更好。压降,热量,质量和动量传递等参数受相速度场的影响。尽管如此,各种模型用于确定速度场。因此,选择一个型号的问题,该模型将提供最接近真实条件的结果。流量可视化给出了实际速度场的非侵略性确定。进行了对速度场的分析,显示了对于不同的两相流动制度,对给定算法存在差异。使用以下算法来确定速度矢量场:使用自适应相关方法和自适应粒子图像速度方法,其是一般数字粒子图像速度计的部分。获得了定量和定性评估给定的两相流动制度的定性评估中的速度场的确定。研究结果是评估表征两相气液流动的算法。

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