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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Investigation of pore-scale flow physics in porous media burners
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Investigation of pore-scale flow physics in porous media burners

机译:APS-流体动力学APS分部第70届年会-活动-多孔介质燃烧器中的孔尺度流物理学研究

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摘要

Porous media burners (PMBs) operate on the principle that the solid porous matrix serves as a means of internally recirculating heat from the combustion products upstream to the reactants, enabling a reduction of the lean-flammability limit, higher power dynamic range, and lower NOx and CO emissions as compared to conventional systems. Accurate predictions of the flow features and properties such as pressure loss in reticulated ceramic foams is an important step in the characterization and optimization of combustion in porous media. In this work, an integrated framework is proposed from obtaining the porous sample to performing a computational fluid dynamics simulation, including X-ray microtomography scanning, digital topology rendering, and volume meshing. Three-dimensional numerical simulations of the flow in the complex geometries of porous foams are obtained by solution of the Navier-Stokes equations using an unstructured, finite-volume solver. This capability enables the investigation of pore-scale flow physics in a wide range of porous materials used in PMBs. In this talk, results obtained at pore-scale Reynolds numbers of order 10 to 100 in a Silicone Carbide foam are presented to demonstrate this capability.
机译:多孔介质燃烧器(PMB)的工作原理是,固体多孔基质可作为内部热量从上游燃烧产物再循环到反应物的手段,从而可以降低稀薄燃烧极限,提高功率动态范围并降低NOx和传统系统相比准确预测流动特性和特性(例如网状陶瓷泡沫中的压力损失)是表征和优化多孔介质中燃烧的重要一步。在这项工作中,提出了一个集成的框架,从获取多孔样品到执行计算流体动力学模拟,包括X射线显微断层扫描,数字拓扑渲染和体网格划分。通过使用非结构化有限体积求解器对Navier-Stokes方程进行求解,可以获得多孔泡沫复杂几何形状中流动的三维数值模拟。此功能使人们能够研究PMB中使用的多种多孔材料中的孔尺度流动物理学。在本次演讲中,将介绍在碳化硅泡沫塑料中以10到100的孔尺度雷诺数获得的结果,以证明这种能力。

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