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Modelling of heat transfer in a fluidized bed reactor irradiated indirectly by concentrated solar energy

机译:通过集中的太阳能间接照射流化床反应器中传热的建模

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A two phases model of air heating in bubbling fluidized bed of sand particles with concentrated solar radiation as source of energy is developed. This model is based on the Kato and Wen's model (1969) for the hydrodynamic aspect which was modified to take account the thermic aspect. Nine algebraic equations were established in permanent regime for different heat and mass balances as well as heat losses against surrounding media. The Newton Raphson's method was used to solve this system of equations. Results have shown that the model developed is able to predict the temperature profiles of gas and particles in the bubble and emulsion phases, the wall temperature along the reactor, the heat flux transferred to the bed and heat losses by forced convection and radiation to surrounding air. The effects of the fluidizing air velocity, total mass of particles and the wind velocity on the thermal behaviours were examined. Model predictions seem reasonable looking for its comparison agreement with bibliographical data.
机译:开发了一种两相模型,用于浓缩太阳辐射作为能量源的砂粒砂颗粒的流化床流化床。该模型基于Kato和Wen的模型(1969),用于修改的流体动力方面,以考虑热学方面。在永久性方程中建立了九个代数方程,用于不同的热量和质量平衡以及对周围媒体的热量损失。牛顿Raphson的方法用于解决这个方程系统。结果表明,该模型能够预测气泡和乳液相中的气体和颗粒的温度曲线,沿着反应器的壁温,通过强制对流和辐射传递到床的热量和热量损失到周围空气。研究了流化空气速度,总质量的颗粒和风速对热行为的影响。模型预测似乎是合理的与参考书目数据相提并论。

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