A Dynamic, Adaptive, Locally Conservative and Nonconforming Solution Strategy for Transport Phenomena in Chemical Engineering
نویسندگان
چکیده
Transport phenomena, including mass, momentum and heat transfer and the coupling of transport and chemical reactions, play a dominant role in chemical engineering processes. For example, a distillation process in a packed column involves fluid flow (momentum transfer) of liquid and vapor phases, mass transfer within a homogeneous phase and on the liquid and vapor interface, and heat transfer within and between phases [6, 9-11, 16]. Mathematical modeling of transport phenomena has been widely employed in many areas of chemical engineering. Analytical solutions for such modeling systems are usually not available due to the complexity of the chemical engineering process systems. Instead, numerical methods have to be used extensively.
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