This study explores the potential of microstructured hollow fiber designs to enhance process performance in a direct contact membrane distillation (DCMD) system. Hollow fibers with 10 different geometries (wavy- and gear-shaped cross sections) were evaluated. A series of three-dimensional computational fluid dynamic (CFD) simulations were carried out to investigate their capability in terms of depolarizing the buildup of liquid boundary layers, thus improving water productivity. Analyses of heat and mass transfer as well as the flow-field distribution in respective MD modules were obtained. It was found that the enhancement of the heat-transfer coefficients, hf, was up to 4.5-fold for a module with a wavy fiber design 07 and an approximate 5.5-f...
Two geometric shape turbulence promoters (circular and square of same areas) of different array patt...
The heat and mass transfer processes in direct contact membrane distillation (MD) under laminar flow ...
Membrane distillation (MD) can be used in drinking water treatment, such as seawater desalination, u...
This study explores the potential of microstructured hollow fiber designs to enhance process perform...
As an extended exploration of process enhancing strategies, nine modified hollow fiber modules with va...
Five types of novel hollow fiber module configurations with structured-straight fibers, curly fibers...
Membrane distillation (MD), which involves mass- and heat-transfer phenomena, is a promising techniq...
A comprehensive analysis on the dominant effects for heat and mass transfer in the direct contact me...
[[abstract]]Membrane distillation (MD) can utilize low level thermal energy and holds high potential...
The performance of membrane distillation depends on both membrane and module characteristics. This p...
Membrane Distillation (MD) is a membrane-based, temperature-driven water reclamation process. While ...
International audienceThe present study highlights the effect of different hollow fiber membrane con...
[[abstract]]Membrane distillation (MD) can utilize low level thermal energy and holds high potential...
Membrane distillation (MD) process has been considered as a promising alternative to these conventio...
Two geometric shape turbulence promoters (circular and square of same areas) of different array patt...
The heat and mass transfer processes in direct contact membrane distillation (MD) under laminar flow ...
Membrane distillation (MD) can be used in drinking water treatment, such as seawater desalination, u...
This study explores the potential of microstructured hollow fiber designs to enhance process perform...
As an extended exploration of process enhancing strategies, nine modified hollow fiber modules with va...
Five types of novel hollow fiber module configurations with structured-straight fibers, curly fibers...
Membrane distillation (MD), which involves mass- and heat-transfer phenomena, is a promising techniq...
A comprehensive analysis on the dominant effects for heat and mass transfer in the direct contact me...
[[abstract]]Membrane distillation (MD) can utilize low level thermal energy and holds high potential...
The performance of membrane distillation depends on both membrane and module characteristics. This p...
Membrane Distillation (MD) is a membrane-based, temperature-driven water reclamation process. While ...
International audienceThe present study highlights the effect of different hollow fiber membrane con...
[[abstract]]Membrane distillation (MD) can utilize low level thermal energy and holds high potential...
Membrane distillation (MD) process has been considered as a promising alternative to these conventio...
Two geometric shape turbulence promoters (circular and square of same areas) of different array patt...
The heat and mass transfer processes in direct contact membrane distillation (MD) under laminar flow ...
Membrane distillation (MD) can be used in drinking water treatment, such as seawater desalination, u...