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Gas-liquid dispersion and mixing characteristics and heat transfer in a stirred vessel

机译:搅拌容器内的气液分散混合特性及传热

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Properties of gas-liquid dispersion and mixing of seven types of impellers were studied an compared in a stirred vessel with aeration. New correlations for the properties including critical dispersion impeller speed, dispersion regime, power consumption, gas hold-up, discharge flow number and discharge efficiency have been developed. The fluid/wall heat transfer was also studied with several types of dual impeller combinations. There is a critical impeller speed which determines how aeration changes the heat transfer coefficient. Operating conditions influence heat transfer interactively by three factors, which can be expressed by proper dimensionless variables.
机译:对七种叶轮的气液分散和混合特性进行了研究,并在带通气的搅拌容器中进行了比较。已经开发出包括临界分散叶轮速度,分散状态,功率消耗,气体滞留量,排出流量和排出效率等特性的新关联。还使用几种类型的双叶轮组合研究了流体/壁传热。叶轮的临界转速决定了曝气如何改变传热系数。运行条件通过三个因素相互作用地影响热传递,这可以通过适当的无量纲变量来表示。

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