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Heat and mass transfer of a convective-stratified flow in a trough type tundish

机译:槽型中间包内对流分层流的传热传质

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Fluid flow, heat and mass transfer of liquid steel in a trough type tundish were physically and mathematically simulated using a water model. Flow structures were determined through particle image velocimetry (PIV) techniques. Under isothermal conditions fluid flow approaches that of a plug pattern. Non-isothermal conditions provoked long recirculating flows along the vessel and makes the flow to departure form the plug pattern. Buoyancy forces increased fluid velocities close to the bath surface and enhanced convection mass transfer of a tracer injected in the flow and the flotation of solid particles. Measured fluid velocity fields maintained an acceptable good agreement with mathematical simulations under isothermal and non-isothermal conditions.
机译:槽型中间包中钢液的流动,传热和传质是使用水模型进行物理和数学模拟的。流动结构是通过粒子图像测速(PIV)技术确定的。在等温条件下,流体流量接近塞子模式。非等温条件会导致沿容器的长时间循环流动,并使流动离开塞子模式。浮力增加了靠近熔池表面的流体速度,并增强了注入到流中的示踪剂的对流传质和固体颗粒的浮选。在等温和非等温条件下,测得的流体速度场与数学模拟保持了可接受的良好一致性。

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