Rapid characterization of flow regimes in multiphase reactors through box-counting dimensions with an embedding dimension of two

C.L. Briens, C. Hudson, L.A. Briens
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引用次数: 3

Abstract

The performance of multiphase reactors is greatly affected by their flow regime. The box-counting dimension of a probe signal characterizes its intrinsic, dimensionless structure and is not significantly affected by moderate changes in probe calibration constants. Using the box-counting dimension to characterize the flow regime can, thus, eliminate problems associated with changes in probe, liquid or solid characteristics. This study uses an approximate box-counting dimension which is so rapidly calculated that it could be used for on-line control. The box-counting dimension of the raw signal from a bubble probe allows the accurate detection of gas maldistribution in bubble columns and gas-liquid-solid fluidized beds. The box-counting dimension of the raw signal from a local conductivity probe allows the accurate detection of liquid maldistribution in bubble columns and gas-liquid-solid fluidized beds. The fluidization regime of liquid-solid and gas-liquid-solid beds can be accurately identified from the box-counting dimension of the signal recorded with either local probes or cross-sectional probes. The complete fluidization of a liquid-solid bed of splinter-like particles can be determined from the box-counting dimension of the signals from either a local probe or trace rinjection experiments.

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用嵌入维数为2的盒计数维快速表征多相反应器的流动状态
多相反应器的流态对其性能有很大影响。探针信号的盒计数维数表征了其固有的无量纲结构,并且不受探针校准常数适度变化的显著影响。因此,使用盒计数尺寸来表征流动状态可以消除与探头、液体或固体特性变化相关的问题。这项研究使用了一个近似的盒计数尺寸,它可以快速计算,可以用于在线控制。从气泡探头的原始信号的盒计数维度允许在气泡柱和气液固流化床的气体不均匀分布的准确检测。从一个局部电导率探头的原始信号的盒计数维度允许在气泡柱和气液固流化床中精确检测液体的不均匀分布。通过局部探头或截面探头记录的信号的盒数维,可以准确地识别液-固和气-液-固床的流态化状态。由碎片状颗粒组成的液-固床的完全流化可以通过局部探针或微量注入实验信号的盒计数维数来确定。
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