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Heat Transfer and Fluid Flow Analysis of a Fluidized Bed Reactor for Beam-Down Optics

机译:流化床反应器的热传递与流体流动分析,用于横梁光学元件

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A transient three dimensional numerical model of the heat transfer and fluid flow of a windowed fluidized bed reactor for solar thermochemical conversions is formulated and solved using discrete element method coupled to computational fluid dynamics. Radiation transfer equation is solved by discrete ordinate radiation model and the particle collision dynamics is solved by spring-dashpot model based on soft-sphere method. The instantaneous granular flow behavior of the irradiated bed is presented along with the incident radiation and particle size distribution. The results indicate that as time progresses the average velocity of the particle increases due to high temperature and bed expansion effect.
机译:使用耦合到计算流体动力学的分立元件方法,配制并解决了用于太阳能热化学转化的窗口流化床反应器的传热和流体流动的瞬态三维数值模型。通过离散纵坐标辐射模型解决了辐射传递方程,基于软球法通过弹簧 - 划线模型解决了颗粒碰撞动力学。辐照床的瞬时粒状流动与入射辐射和粒度分布一起呈现。结果表明,随着时间的推移,由于高温和床膨胀效应,粒子的平均速度增加。

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