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Thermosolutal convection in annular enclosure with partially conductive outer-cylinder

机译:具有部分导电外筒的环形外壳中的热镜对流

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This study discussed the thermo-solutal natural convection phenomenon caused by temperature gradient and concentration gradient in a closed container in a geometric shape of double-cylinder through experimental method. The effect of local heat conduction of the outer-cylinder on the flow field in the double-cylinder closed container can be observed in the experiment based on the design of the geometric shape and boundary conditions. This experimental model is designed as one sixth of outer-cylinder and inner cylinder made of copper, and one and two thirds of outer-cylinder made of acrylate. The flow field pattern in a closed area is discussed according to relevant dimensionless parameters. The experimental work fluid is copper sulfate solution (CuSO4+H2SO4+ H2O) at a concentration of 0.05M. The temperature gradient is maintained by two constant temperature water tanks at different temperatures, and the concentration gradient is set up by electrochemical system. The limiting current is applied to both ends of outer cylinder and inner cylinder to make them electrodes to result in concentration gradient. The flow field in the double-cylinder closed container is observed by using shadowgraph, and photographed as record for analysis. In order to determine the structure of flow field, the temperature and concentration distributions in the flow field are measured. Finally, the relations between the mass transfer rate Sh value and Grm, Grt are analyzed.
机译:本研究通过实验方法讨论了在双缸几何形状的封闭容器中引起的热梯度和浓度梯度引起的热源自然对流现象。基于几何形状和边界条件的设计,可以在实验中观察到在双缸封闭容器中的流场上的局部热导热的影响。该实验模型设计为铜的外筒和内圆柱的一六个,以及由丙烯酸酯制成的一个和三分之一的外筒。根据相关的无量纲参数讨论闭合区域中的流场图案。实验性工作流体是硫酸铜溶液(Cuso 4 + H 2 SO 4 + H 2 O)浓度为0.05米。温度梯度由不同温度的两个恒温水箱保持,并且通过电化学系统建立浓度梯度。限制电流被施加到外筒和内圆柱的两端,使它们能够导致浓度梯度。通过使用影子图观察双缸封闭容器中的流场,并将其拍摄为用于分析的记录。为了确定流场的结构,测量流场中的温度和浓度分布。最后,分析了传质率SH值和GR M ,GR T 之间的关系。

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