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首页> 外文期刊>International journal of materials & product technology >Experimental investigation and numerical simulation of heat transfer in quenching fluidised beds
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Experimental investigation and numerical simulation of heat transfer in quenching fluidised beds

机译:流化床淬火传热的实验研究与数值模拟

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Fluidisation characteristics at different surfaces of a work-piece of complex geometry are conducted in a fluidised bed at various conditions including fluidising number, bed temperature and fluidising medium. The quenching of the work-piece is performed experimentally. In particular, the major frequency and energy of the pressure fluctuations are measured as a function of either fluidising velocity or heat transfer position and the results are used to develop a mathematic model. A computational model is developed to simulate gas dynamics and heat transfer between the fluidised bed and the work-piece surface, as well as simulating the temperature within the work-piece. The predicted cooling curves are in good agreement with the experimental results. Based on the simulation results, the flow characteristics of the gas and the temperature of the dense gas-solid phase near the work-piece surface are analysed to understand the heat transfer mechanism in the fluidised bed.
机译:在各种条件下,包括流化数,床温和流化介质,在流化床中进行复杂几何形状工件不同表面的流化特性。工件的淬火是通过实验进行的。尤其是,测量压力波动的主要频率和能量是流化速度或传热位置的函数,并将结果用于建立数学模型。开发了一种计算模型,以模拟气体动力学和流化床与工件表面之间的热传递,并模拟工件内的温度。预测的冷却曲线与实验结果非常吻合。根据模拟结果,分析了气体的流动特性和工件表面附近的致密气固相的温度,以了解流化床中的传热机理。

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