Pressure drop of structured packing in pilot column and comparison to common correlations
Full Length Article|Updated:2026-01-06
|
Pressure drop of structured packing in pilot column and comparison to common correlations
Pressure drop of structured packing in pilot column and comparison to common correlations
中国化学工程学报(英文版)2023年64卷第12期 页码:281-291
Affiliations:
Center for Energy Resources Engineering (CERE), Department of Chemical and Biochemical Engineering, Technical University of Denmark (DTU), Søltofts Plads 229, Kgs2800. Lyngby,Denmark
Author bio:
Funds:
DOI:
中图分类号:
纸质出版:2023
Accepted:
Scan QR Code
Emil Madsen, Randi Neerup, Arne Gladis, 等. Pressure drop of structured packing in pilot column and comparison to common correlations[J]. 中国化学工程学报(英文版), 2023,64(12):281-291.
Emil Madsen, Randi Neerup, Arne Gladis, Jens K. Jørsboe, Nicolas von Solms, Philip L. Fosbøl. Pressure drop of structured packing in pilot column and comparison to common correlations[J]. Chinese Journal of Chemical Engineering, 2023, 64(12): 281-291.
Emil Madsen, Randi Neerup, Arne Gladis, 等. Pressure drop of structured packing in pilot column and comparison to common correlations[J]. 中国化学工程学报(英文版), 2023,64(12):281-291.DOI:
Emil Madsen, Randi Neerup, Arne Gladis, Jens K. Jørsboe, Nicolas von Solms, Philip L. Fosbøl. Pressure drop of structured packing in pilot column and comparison to common correlations[J]. Chinese Journal of Chemical Engineering, 2023, 64(12): 281-291.DOI:
Pressure drop of structured packing in pilot column and comparison to common correlations
Packed columns are widely used in the chemical industry such as absorption
stripping
distillation
and extraction in the production of
e.g.
organic chemicals
and pharmaceuticals. Pressure loss and pressure drop correlations are of special interest when it comes to the hydrodynamic properties of a column. The pressure loss across the column is of interest in the design phase when the size of the blower to drive the gas stream through the column has to be decided. The loading point and flooding point are also influenced by the pressure loss and the area of operation is determined from these points. This work examines four different correlations on pressure drop. The correlations are (i) Ergun’s equation (1952)
(ii) an improved version of Ergun’s equation by Stichlmair
Bravo
and Fair (1989)
(iii) an equation developed by Billet and Schultes (1999)
and (iv) an equation by Rocha
Bravo
and Fair (1993). The complexity of the correlations is increasing in the mentioned order
Ergun’s equation being the simplest one. This study investigates if the more complicated correlations give better predictions to pressure drop in packed columns. This is determined by comparing the correlations to experimental data for pressure dro
p in a packed column with 8.2 m of structured packing using water as the liquid and atmospheric air as the gas. Seven experiments were carried out for determining the pressure drop in the column with liquid flows varying from 0 to 500 kg·h
-1
. At constant liquid flow
the gas flow was varied from approximately 10 to 70 kg·h
-1
. The pressure drop across the non-wetted column was best described by the correlation by Rocha
et al
. while the pressure drop for liquid flows from 100 to 500 kg·h
-1
was
in general
best described by Stichlmair’s equation. For an irrigated column
the highest deviation was a predicted pressure drop 69.6% lower than measured. The best prediction was 0.1% higher than the measured. This study shows
surprisingly
that for a system of water and atmospheric air
complicated correlations on pressure drop determination do not provide better estimates than simple equations.
关键词
Keywords
references
The trial reading is over, you can activate your VIP account to continue reading.