In this numerical study based on the concept of electrokinetic flow, a vertical flow model has been developed for the implementation of blood flow transport. Electrical voltage and time were varied in a range of 0 -20 kV, and 0 -10 s, respectively. In the vertical upward flow model, blood flows through a porous fat deposit while presenting the electric field, flow pattern, pressure field, vorticity field and the temperature field, both with and without electrokinetic flow. The results show that blood flow moves upward within the vertical flow model but electric field is not appeared in case of absent the electrokinetic flow. With the electrokinetic flow, the electric field is more concentrated when a higher electrical voltage is applied and the electrical voltage is not dependent on time, but the electric field increases when the electrical voltage is increased. The flow pattern, pressure field, vorticity field and temperature field are not in the same pattern as the electric field but they are induced by the electric field. In addition, the electric value, velocity, pressure and vorticity increase with increasing electrical voltage and the temperature increases with increasing electrical voltage and time. Finally, electrokinetic flow can induce the temperature within a porous fat deposit so that the heating zone is enhanced.