Modelling versions and simulations of the cryogenic air distillation column
A. Cioloca, Roxana Both
Abstract
A. Cioloca, Roxana Both
Abstract
Distillation columns are the main operation units in cryogenic air separation plants that supply purified gasses to a number of industries, one of them being the ammonia synthesis process. The need of an efficient control for the distillation process emerged due to high operating costs: great amount of energy consumption. A proper mathematical model of the column can be used to understand the behavior of the column, predict future reaction and most important to develop a control structure. This paper reviews the conventional models for distillation columns and presents a non-conventional model of the cryogenic air distillation column. Some possible simulation schemes are also presented for column behavior evaluation.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Distillation columns are the main operation units in cryogenic air separation plants that supply purified gasses to a number of industries, one of them being the ammonia synthesis process. The need of an efficient control for the distillation process emerged due to high operating costs: great amount of energy consumption. A proper mathematical model of the column can be used to understand the behavior of the column, predict future reaction and most important to develop a control structure. This paper reviews the conventional models for distillation columns and presents a non-conventional model of the cryogenic air distillation column. Some possible simulation schemes are also presented for column behavior evaluation.
Key concepts: Distillation, Fractionating column, Air separation, Column (typography), Process engineering, Process (computing), Energy consumption, Process control