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Winprop Manual Cmg
winprop manual cmg























Winprop Cmg Upgrade To An

This chapter covers the following:WinProp is the most complete suite of tools in the domain of wireless propagation and radio network planning. It can be applied as an upgrade to an existing 2019 installation, or it can be installed without first installing Feko + WinProp 2019. Release Notes: Feko + WinProp 2019.1 1 Relea se Note s: Fe ko+ in Prop 2019.1 Feko + WinProp 2019.1 is available with new features, corrections and improvements.

However, the method cannot simulate STRIP's carbon dioxide (CO 2) and steam coinjection because the K‐value method does not consider miscible gas injection. Commercial simulators such as STARS - Thermal and Advanced Processes Reservoir Simulator often use the K‐value approach to simulate TEOR. In this effort, a quarter‐symmetry inverse‐five‐spot model and a multiphase, multicomponent reservoir‐simulation framework were used to simulate the STRIP technology.

Immiscible methane (CH 4) was added to GEM models to maintain gas saturations equivalent to the STARS model. In this framework, STARS simulated steam injection (but cannot directly simulate the effects of CO 2) and was the governing model that synchronized temperature, pressure, and phase saturations for two parallel iterations of the GEM models (GEM‐1 and GEM‐2) at each timestep. The novel simulation framework developed here leverages and combines the individual strengths of STARS (thermal features) and GEM (compositional features).

Next, the GEM‐2 model also simulated hot‐water and CH 4 injection, but matched both water and oil productions along with oil saturations from the final GEM‐1 run by altering relative permeabilities. Calibrated injection rates from GEM‐1 were specified in GEM‐2 to ensure equivalence of the pressure field. A final run of GEM‐1 injected both CO 2 and hot water and demonstrated the expected increase in oil production.

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