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- W2079595349 abstract "Theoretical and experimental investigations were performed with cold water models of bottom-blown metallurgical ladles in order to develop a mathematical description of the mixing processes in such reactors. This analytical model is based on the subdivision of the reactor into interacting subspaces, whereby each subspace is regarded as an ideal mixer. The convective mass transfer between the subspaces is represented by constant coupling coefficients, and the mass balance for the material to be mixed in provides a homogeneous system of differential equations to determine the time dependence of concentration in the individual subspaces. Different combinations of interacting subspaces are represented. The flow field and the distribution of turbulence intensity measured by LDA in water models and the concentration profiles in mercury models measured by EMF cells show that a subdivision into five subspaces is adequate. Size, position and interaction coefficients are also determined by experiments. The calculated mixing times agree well with those measured." @default.
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- W2079595349 date "1993-06-01" @default.
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- W2079595349 title "Experimental investigations of flow, turbulence and subspace formation on cold models of gas-stirred reactors with a view to describing mixing processes by mathematical models" @default.
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- W2079595349 doi "https://doi.org/10.1002/ceat.270160304" @default.
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