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Flow Characteristic of Two-Phase Bubble Reactor for Slag Waste Heat Recovery

机译:两相泡沫反应器的流动特性渣渣热回收

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In order to recover the waste heat of molten blast furnace slag, a reactor with top-submerged lance was established. The numerical simulation and experiment study of the flow characteristic in the reactor were conducted. The mathematical model of reactor was established and the Euler-Euler model was employed to simulate the gas-liquid flow in molten slag bath. Meanwhile, the experiment results were obtained and compared with the simulation to testify the accuracy of the established model. According to the bubble behavior in bath, there were four stages: initial expansion stage, bubble detachment stage, freedom lift up stage and bubble broken stage. When the flow field in bath fully developed, the gas fraction decreased with the increasing of bath depth. During injection process, the area near the nozzle and lower the bath would first generate two symmetric heliciform flow regime, and then the flow regime in whole bath would become irregular because of bubble lifting up and rupturing. The gas fraction in bath, the average velocity and turbulence energy of slag would decrease before it increased to maximum and then it would keep fluctuate in a range.
机译:为了恢复熔融高炉渣的废热,建立了具有顶层淹没的矛盾的反应器。进行了反应器流动特性的数值模拟与实验研究。建立了反应器的数学模型,采用欧拉 - 欧拉模型模拟熔融渣浴中的气液流动。同时,获得实验结果并与模拟进行比较,以证明已建立的模型的准确性。根据浴室中的泡沫行为,有四个阶段:初始扩张阶段,泡沫分离阶段,自由升降阶段和泡沫破碎阶段。当浴缸中的流场完全开发时,随着浴槽深度的增加而降低气体馏分。在喷射过程中,喷嘴附近的区域和下浴的区域首先产生两个对称的螺旋形流量,然后由于泡沫升降和破裂,整个浴中的流动状态将变得不规则。浴中的气体馏分,炉渣的平均速度和湍流能量在增加到最大值之前会降低,然后它会保持在范围内的波动。

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