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A detailed axi-symmetric computational model for reactive flow was developed and tested for this purpose.
We consider a model for reactive flow in a fractured formation.
In this paper we develop a generic, dynamic, nonequilibrium (NEQ) stage model for reactive distillation (RD) columns.
The conceptual 2D systems were simulated using the HYDRUS model for flow and the POLYMIN model for reactive transport.
We develop a generic steady-state design model for reactive distillation tray columns involving arbitrary liquid-phase reactions.
In this paper we develop a generic, dynamic, nonequilibrium (NEQ) cell model for reactive distillation (RD) tray columns.
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This has significant implications for mixing models for reactive flows.
The state of the art equilibrium model and the rate-based models for reactive distillation (RD) are very well known and have been used since a couple of decades.
This paper presents numerical simulations and laser diagnostic experiments of a swirling lean premixed methane/air flame with an aim to compare different Large Eddy Simulations (LES) models for reactive flows.
The primary objective of this study was to develop and demonstrate an experimental method to refine and better parameterize process models for reactive contaminant transport in aqueous subsurface environments and to reduce conservatism in such models without attempting to fully describe the geochemical system.
This contribution focuses on the development of a dynamic conceptual model for batch reactive distillations.
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