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Direct numerical simulation of catalytic combustion in a multi-channel monolith reactor using personal computers with emerging architectures.

, and . Comput. Chem. Eng., (2014)

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Toward simulation of full-scale monolithic catalytic converters with complex heterogeneous chemistry., and . Comput. Chem. Eng., 34 (2): 135-145 (2010)Adaptation of the in situ adaptive tabulation (ISAT) procedure for efficient computation of surface reactions.. Comput. Chem. Eng., 30 (1): 115-124 (2005)Numerical investigation of wall heat conduction effects on catalytic combustion in split and continuous monolith tubes., and . Comput. Chem. Eng., 32 (3): 552-560 (2008)Assessment of various diffusion models for the prediction of heterogeneous combustion in monolith tubes., and . Comput. Chem. Eng., 32 (7): 1482-1493 (2008)Critical assessment of the stability and convergence of the equations of multi-component diffusion.. J. Comput. Phys., 212 (2): 383-392 (2006)Adaptation and application of the In Situ Adaptive Tabulation (ISAT) procedure to reacting flow calculations with complex surface chemistry., and . Comput. Chem. Eng., 35 (7): 1317-1327 (2011)On the implementation of membrane models in computational fluid dynamics calculations of polymer electrolyte membrane fuel cells., and . Comput. Chem. Eng., 32 (7): 1650-1660 (2008)Direct numerical simulation of catalytic combustion in a multi-channel monolith reactor using personal computers with emerging architectures., and . Comput. Chem. Eng., (2014)Automating GPU Scalability for Complex Scientific Models: Phonon Boltzman Transport Equation., , , , , and . CoRR, (2023)Multi-discretization domain specific language and code generation for differential equations., , , , and . J. Comput. Sci., (April 2023)