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Design and Analysis of Air Distributors and Bed Materials of Fluidized Bed Boiler

机译:流化床锅炉空气分配器和床身材料的设计与分析。

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This research deals with the design and analysis of the nozzle and bed materials required for fluidized bed boiler. The design parameters (Diameter of the bed particle, Range of the terminal velocities, Minimum Fluidization /Bubbling velocities, Maximum amplitude and steady velocities) were calculated using Microsoft Excel by interpreting and solving various formulas. Best bed material was selected on the basis of their various characteristics like porosity, adhesive or cohesive properties, resistance to flow etc. An important characteristic change of air distributor velocity with combustion chamber temperature has been established. ANSYS was used as a simulation tool for the analysis. Static Structural solver was used to carry out the strength analysis of the designed wind box. Likewise, computational fluid dynamics (CFD) was carried out using FLUENT solver. Air flow inside the wind box and fluidization phenomena was verified using FLUENT. Furthermore, the designed system was checked for its validity by comparing the results from the Excel sheets and theoretical calculations with simulation results. Lastly, correlation between temperature and velocity inside combustion temperature were determined to identify their relationship with each other.
机译:这项研究涉及流化床锅炉所需的喷嘴和床层材料的设计和分析。通过解释和求解各种公式,使用Microsoft Excel计算了设计参数(床颗粒直径,最终速度范围,最小流化/鼓泡速度,最大振幅和稳定速度)。选择最佳床料的依据是它们的各种特性,例如孔隙率,粘合性或内聚性,耐流动性等。建立了空气分配器速度随燃烧室温度变化的重要特性。 ANSYS用作分析的仿真工具。使用静态结构求解器对设计的风箱进行强度分析。同样,使用FLUENT求解器进行计算流体动力学(CFD)。使用FLUENT验证了风箱内部的空气流动和流态化现象。此外,通过将Excel工作表和理论计算结果与仿真结果进行比较,检查了设计系统的有效性。最后,确定温度与燃烧温度内部速度之间的相关性以识别它们之间的关系。

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