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Analysis of the Heat Transfer Mechanism in High Temperature Circulating Fluidized Beds by a Numerical Model

机译:数值模型分析高温循环流化床中的传热机理

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A general numerical model is presented here to describe the complex fluid dynamics and the heat transfer process in high temperature circulating fluidized beds (CFBs). The core-wall concept is used to describe the gas-solid flow in the dilute phase section of CFBs. The variation of the thickness of the wall layer along the height direction is considered in the fluid dynamic model in order to approach the practical condition. Three components of heat transfer i.e. the particle-convective heat transfer, the gas-convective heat transfer and the radiative heat transfer and their contributions to the total heat transfer coefficient are investigated. The influences of some operating parameters on the total heat transfer and its components are predicted. Detailed information about the mechanism of heat transfer is given. The radiative heat transfer accounts for about 30~60% of the total heat transfer in high-temperature CFBs. It gradually increases along the height of the furnace. When the contribution of particle convection increases, the contribution of gas convection decreases, and vice versa. Particle size shows a significant effect on the radiative heat transfer and the convective heat transfer. High bed and wall temperatures will primarily increase the radiative heat transfer.
机译:这里提出了一般数值模型来描述高温循环流化床(CFBs)中的复杂流体动力学和传热过程。核心壁概念用于描述CFBS的稀释相段中的气体固体流动。在流体动态模型中考虑沿着高度方向沿着高度方向的厚度的变化以接近实际情况。研究了传热的三个组分。研究了粒子对流传热,气体对流热传递和辐射传热及其对总传热系数的贡献。预测了一些操作参数对总传热及其组件的影响。给出了关于传热机制的详细信息。辐射热传递占高温CFB中总热传递的约30〜60%。它沿着炉子的高度逐渐增加。当粒子对流的贡献增加时,气体对流的贡献降低,反之亦然。粒度显示对辐射传热和对流热传递的显着影响。高床和墙面温度将主要增加辐射传热。

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