A three-dimensional finite volume model of the blood-dialysate interface over the complete length of the dialyzer was developed. Different equations govern dialyzer flow and pressure distribution (Navier-Stokes) and radial transport (Darcy). Blood was modeled as a non-Newtonian fluid with a viscosity varying in radial and axial direction determined by the local hematocrit, the diameter of the capillaries, and the local shear rate. The dialysate flow was assumed to be an incompressible, isothermal laminar Newtonian flow with a constant viscosity. The permeability characteristics of the membrane were calculated from laboratory tests for forward and backfiltration. The oncotic pressure induced by the plasma proteins was implemented as well as ...
Hemodialysis is a membrane-based process in which solute transport from the patient’s blood to a rin...
Objectives The study aims to predict 3-D flow and solute concentrations fields both for blood and d...
Objectives The study aims to predict 3-D flow and solute concentrations fields both for blood and d...
The evaluation of dialyzer geometry was obtained by investigating transport processes and fluid prop...
A computational model was developed to predict the performance of hollow fiber membrane hemodialyzer...
A computational model was developed to predict the performance of hollow fiber membrane hemodialyzer...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The efficiency of a hemodialyzer is largely dependent on its ability to facilitate diffusion between...
Objectives: The model proposed aims to predict how geometric, transport and operative parameters aff...
Objectives: The model proposed aims to predict how geometric, transport and operative parameters aff...
Hemodialysis is a membrane-based process in which solute transport from the patient’s blood to a rin...
Objectives The study aims to predict 3-D flow and solute concentrations fields both for blood and d...
Objectives The study aims to predict 3-D flow and solute concentrations fields both for blood and d...
The evaluation of dialyzer geometry was obtained by investigating transport processes and fluid prop...
A computational model was developed to predict the performance of hollow fiber membrane hemodialyzer...
A computational model was developed to predict the performance of hollow fiber membrane hemodialyzer...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The potential of convective solute transport for blood purification has been widely explored. New te...
The efficiency of a hemodialyzer is largely dependent on its ability to facilitate diffusion between...
Objectives: The model proposed aims to predict how geometric, transport and operative parameters aff...
Objectives: The model proposed aims to predict how geometric, transport and operative parameters aff...
Hemodialysis is a membrane-based process in which solute transport from the patient’s blood to a rin...
Objectives The study aims to predict 3-D flow and solute concentrations fields both for blood and d...
Objectives The study aims to predict 3-D flow and solute concentrations fields both for blood and d...