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Heat transfer performances of honeycomb regenerators with square or hexagon cell opening

机译:具有正方形或六边形细胞开口的蜂窝再生器的传热性能

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Honeycomb regenerators with varied cell openings are applied to regenerative combustion systems. A three-dimensional unsteady numerical model, which calculate the gas flow and gas-solid heat transfer in regenerators with square or hexagon cell openings is developed by computational fluid dynamics package, FLUENT. The radiative transfer equation is employed to calculate radiative heat transfer in gas and is added in gas energy conservation equation as a source term. Convection coupled with radiation is used in gas-solid boundary condition. Moreover, temperature-dependent thermal properties of gas and solid are considered in the model. By comparing simulation results with experimental data from the literature, the numerical model is verified. The effects of different cell opening shapes on gas-solid interface heat flux, gas temperature profile and energy recovery ratio are compared. The simulation results show that there is a higher outlet air temperature and energy recovery ratio in square opening cells than hexagon opening cells. Furthermore, the influences of cell opening side length and switching time on air pre-heating effect and pressure loss are investigated in regenerators with the two different openings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:具有多种电池开口的蜂窝再生器应用于再生燃烧系统。通过计算流体动力学封装,流畅的,通过计算流体动力学封装开发了一种三维不稳定数值模型,其计算具有方形或六边形细胞开口的再生器中的再生器。采用辐射传递方程来计算气体中的辐射传热,并以气体节能方程添加为源期。与辐射连接的对流用于气体固体边界条件。此外,在模型中考虑了气体和固体的温度依赖性热性质。通过将模拟结果与来自文献的实验数据进行比较,验证了数值模型。比较了不同细胞开口形状对气体固体界面热通量,气体温度曲线和能量回收率的影响。模拟结果表明,方形开口电池中的出口空气温度和能量回收率比六角形开口电池更高。此外,在具有两个不同开口的再生器中研究了细胞开口侧长度和切换时间对空气预热效果和压力损失的影响。 (c)2017 Elsevier Ltd.保留所有权利。

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