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Influence of different parameters on the tube-to-bed heat transfer coefficient in a gas-solid fluidized bed heat exchanger

机译:不同参数对气固流化床热交换器管床传热系数的影响

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In this paper a combined use of CFD techniques and Design of Experiments is proposed in order to study the significance of different variables on the heat transfer coefficient in a gas-solid fluidized bed heat exchanger. Initially a computational model was developed using Ansys Fluent and validated in order to represent the system under study. Then, this model was used to complete the runs of a 2(5-1) fractional factorial design, in which the response variable was the heat transfer coefficient and factors were: particle diameter, particle thermal conductivity, gas velocity, diameter of the heat transfer tubes and distance between tubes. The results of 16 simulation were used to create different models in which the significance of each coefficient was analyzed. Particle diameter proved to be the parameter that influenced the most the response variable, while gas velocity and solid thermal conductivity showed little effect on the heat transfer coefficient.
机译:本文提出了CFD技术的结合使用和实验设计,以研究不同变量对气体固体流化床热交换器中的传热系数的意义。 最初,使用ANSYS流畅并验证的计算模型,以表示正在研究的系统。 然后,该模型用于完成2(5-1)分数阶段设计的运行,其中响应变量是传热系数和因素是:粒径,粒子导热率,气体速度,热量的直径 转移管和管之间的距离。 16仿真的结果用于产生不同型号,其中分析了每个系数的重要性。 粒径被证明是影响最响应变量的参数,而气体速度和固体导热率对传热系数的影响很小。

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