首页> 外文会议>Energy and Environment Technology, 2009. ICEET '09 >Numerical Simulation of Gas/Solid Flow in a Novel Annular Spouted Bed with Multiple Gas Nozzles
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Numerical Simulation of Gas/Solid Flow in a Novel Annular Spouted Bed with Multiple Gas Nozzles

机译:新型多喷嘴环形喷头内气体/固流的数值模拟

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A novel annular spouted bed with multiple gas nozzles, has been proposed for dryness, pyrolysis, and gasification of coal particulates. It consists of two homocentric upright cylinders with some annularly located spouting gas nozzles between inner and outer cylinders. A three-dimensional Eulerian multiphase model, with closure law according to the kinetic theory of granular flow, was used to simulate the gas/solid flow behaviors in the spouted beds. The simulation results show that numerical simulation is a useful tool to get detailed information about the gas/solid turbulent motions in the novel spouted beds. Along the bed height, the pressure tends to decrease. Particle concentration increases with increasing of distance away from the nozzle. The particle concentration is less for a high spouting gas velocity. The gas velocities at the center axis of nozzle decrease with increasing the static bed height.
机译:已经提出了一种具有多个气体喷嘴的新型环形喷头床,用于煤颗粒的干燥,热解和气化。它由两个均心的直立圆柱体组成,在内部和外部圆柱体之间有一些环形定位的喷射气体喷嘴。三维欧拉多相模型,具有根据颗粒流动动力学理论的闭合定律,用于模拟喷动床中的气体/固体流动行为。仿真结果表明,数值模拟是获得有关新型喷动床中气体/固体湍流运动详细信息的有用工具。沿着床的高度,压力趋于降低。颗粒浓度随着距喷嘴距离的增加而增加。对于高喷射气体速度,颗粒浓度较小。喷嘴中心轴处的气体速度随固定床高度的增加而降低。

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