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Tomography-Based Heat and Mass Transfer Characterization of Reticulate Porous Ceramics for High-Temperature Processing

机译:基于层析成像的高温加工网状多孔陶瓷的传热和传质特性

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摘要

Reticulate porous ceramics employed in high-temperature processes are characterized for heat and mass transfer. The exact 3D digital geometry of their complex porous structure is obtained by computer tomography and used in direct pore-level simulations to numerically calculate their effective transport properties. Two-point correlation functions and mathematical morphology operations are applied for the geometrical characterization that includes the determination of porosity, specific surface area, representative elementary volume edge size, and mean pore size. Finite volume techniques are applied for conductive/convective heat transfer and flow characterization, which includes the determination of the thermal conductivity, interfacial heat transfer coefficient, permeability, Dupuit-Forchheimer coefficient, residence time, tortuosity, and diffusion tensor. Collision-based Monte Carlo method is applied for the radiative heat transfer characterization, which includes the determination of the extinction coefficient and scattering phase function.
机译:高温工艺中使用的网状多孔陶瓷的特征是传热和传质。复杂的多孔结构的精确3D数字几何可通过计算机断层扫描获得,并用于直接的孔隙水平模拟,以数值计算其有效的传输性能。两点相关函数和数学形态学运算用于几何表征,包括确定孔隙率,比表面积,代表性基本体积边缘尺寸和平均孔径。有限体积技术用于传导/对流传热和流动表征,包括热导率,界面传热系数,渗透率,Dupuit-Forchheimer系数,停留时间,曲折度和扩散张量的确定。基于碰撞的蒙特卡洛方法用于辐射传热的表征,包括消光系数和散射相位函数的确定。

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