PIPESIM-Net General Network Analysis Model
Source: Baker Jardine Americas Inc
The model employs a sophisticated general purpose network solution algorithm which can efficiently solve large and complex networks
An upgrade to PIPESIM that is capable of modelling complete field developments including; inflow performance, tubing, complex flowline systems and field equipment through to the production facilities. The model employs a sophisticated general purpose network solution algorithm which can efficiently solve large and complex networks, including gathering systems, looped systems and distribution systems (i.e. gas or water injection system) that may include field equipment.
PIPESIM-Net allows the simulation of networks compositionally using in-line multiphase flash capabilities with rigorous vapour-liquid equilibrium calculations corresponding to varying calculated fluid compositions. Both Peng- Robinson and Soave Redlich Kwong EOS are provided
PIPESIM-Net can model any reasonable number of producing sources or wells;
- 1. Simulates distribution, gathering, and combination systems
2. Simulates gas, liquid or two phase networks
3. Mixed boundary condition specifications allows flow and/or terminal pressures and curves to be supplied
PIPESIM-Net allows the simulation of networks compositionally using in-line multiphase flash capabilities with rigorous vapour-liquid equilibrium calculations corresponding to varying calculated fluid compositions. Both Peng- Robinson and Soave Redlich Kwong EOS are provided
... or Black Oil
You can also chose from various black oil and single phase gas physical property prediction methods.
Speed of Operations:
BJA are continuously investing in PIPESIM-Net to provide yet speedier solutions to our clients. Recent speed enhancements include:
- 1. Improved algorithms give rapid convergence of even the most complex network simulations.
2. New restart files speed solutions.
Baker Jardine Americas Inc
7500 San Felipe, Ste 440
Houston, Texas 77063
United States
Phone: 713-334-2243
Fax: 713-334-2195
Contact: Marcelia B. Anderson