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TURBULENT FLOW IN A STIRRED TANK WITH PERMEABLE IMPELLER BLADES

机译:搅拌罐中的湍流流动透叶片叶片

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This paper presents results from the experimental investigation of single-phase flow in a prototype stirred tank reactor, which uses monolith catalyst blocks as impeller. These monolith catalyst supports have been used for a dual role: (i) as stirrer blades for agitation and (ii) to bring reactants in contact with the catalyst in a way that eliminates the need for product filtration. The reactors are under investigation as replacement for the standard slurry stirred tank reactors used in the catalytic processes in chemical industry. The flow field in the reactor with this novel impeller, was determined using LDA. Mean and fluctuating velocity data were measured for different monolith blocks and impeller speeds. Results show the normalized flow in the bulk of the tank to be independent of impeller speed and monolith type. Flow velocities through the monolith channels, which are crucial to bring the reactants in contact with the catalyst impregnated in the monolith walls, were measured with LDA. These velocities were found to be of the order of 30-70% of the impeller tip velocity, dependent on the impeller speed and monolith type.
机译:本文提出了原型搅拌釜反应器中单相流的实验研究的结果,该反应器用整体催化剂块作为叶轮。这些整体催化剂载体已被用于双重作用:(i)作为搅拌的搅拌器叶片和(ii)以消除产品过滤的需要,使反应物与催化剂接触。反应器正在调查中,作为化学工业催化过程中使用的标准浆料搅拌釜反应器的替代品。使用LDA测定反应器中的流场与该新型叶轮。针对不同的整体块和叶轮速度测量了平均值和波动速度数据。结果显示罐体中的归一流流动,与叶轮速度和整料型无关。通过LDA测量通过整体通道通过整体通道的流速,这是将反应物与浸渍在整孔壁中的催化剂接触的反应物。这些速度被发现为叶轮尖端速度的30-70%,取决于叶轮速度和整体型。

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