Eclipse Core Simulator
Multicomponent reservoir fluid description for compositional changes associated with depth, condensates, or volatile crude oils, gas injection programs, and secondary recovery studies
Determine how much lift gas to allocate to each well in order to meet production targets
The gas lift optimization facility finds the best way to allocate lift gas, ensuring that production targets are met in the most efficient way possible.
If production targets cannot be met, it determines how to make best use of the existing lift gas resources by allocating it preferentially to the wells that can make the best use of it.
The Eclipse simulator enables users to easily simulate any field development strategy and can allow extensibility for coupling to external simulators.
Every well (or group of wells) in the Eclipse simulation can have production / injection rates and pressure targets. In addition, dedicated models support gas field operations, gas lift optimization, surface networks and reservoir coupling.
Eclipse gas lift optimization can be used to tackle the following problems:
NExT offers a comprehensive training program to support users of the SLB software, plugins, and other software products.
Black oil, compositional, thermal, and streamline reservoir simulation.
Make more informed decisions to extract the most value from your field over its lifetime.
Simulate the full spectrum of enhanced oil recovery methods and model CO2 capture and storage projects
Control your reservoir simulation with a wide range of field management options
Model complex wells and geology
Leverage the power of high-performance computers to speed up your simulation workflows
Black oil, compositional, thermal, and streamline reservoir simulation
For heavy oil recovery, handling changes in reservoir temperature and calorific energy
Simulate coal bed methane, shale gas, shale oil, and naturally fractured reservoirs