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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >Gas liquid two-phase flow structure in the multi-scale weighted complexity entropy causality plane
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Gas liquid two-phase flow structure in the multi-scale weighted complexity entropy causality plane

机译:多尺度加权复杂度熵因果平面上的气液两相流结构

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The multi-scale weighted complexity entropy causality plane (MS-WCECP) is proposed for characterizing the physical structure of complex system. Firstly we use the method to investigate typical nonlinear time series. Compared with the multi-scale complexity entropy causality plane (MS-CECP), the MS-WCECP can not only uncover the dynamic information loss of complex system with the increase of scale, but also can characterize the complexity of nonlinear dynamic system. In particular, the algorithm of MS-WCECP performs strong anti-noise ability. Then we calculate the MS-WCECP for the conductance fluctuating signals measured from vertical upward gas-liquid two-phase flow experiments in a small diameter pipe, the results demonstrate that the MS-WCECP is a useful approach for exploring the stability and complexity in gas-liquid two-phase flows. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了多尺度加权复杂度熵因果平面(MS-WCECP)来表征复杂系统的物理结构。首先,我们使用该方法研究典型的非线性时间序列。与多尺度复杂度熵因果平面(MS-CECP)相比,MS-WCECP不仅可以发现复杂系统随着尺度的增大而产生的动态信息损失,而且可以表征非线性动力系统的复杂性。特别是,MS-WCECP算法具有很强的抗噪能力。然后针对小直径管道中垂直向上的气液两相流动实验测得的电导波动信号,计算了MS-WCECP,结果表明MS-WCECP是探索气体稳定性和复杂性的有用方法-液体两相流。 (C)2015 Elsevier B.V.保留所有权利。

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