special-topic
BRE 500: Special Topic – GIS and PVT Tools
This course covers some advanced ProMax tools focused on using the ProMax pipeline block, GIS Tool, and PVT Tool. For more information about a particular BRE 500: Special Topic course please Contact Training .
Training Course Agendas
All of our training courses are provided at no charge.
These course agendas are a representation of the course material presented for the specific classes. All material is subject to change depending on the specific needs of the clients at each course.
BRE 500: Special Topic – GIS and PVT Tools
Upcoming Sessions
Dates Location
6/30/2026 - 6/30/2026 Dubai - - UAE
This course covers some advanced ProMax tools focused on using the ProMax pipeline block, GIS Tool, and PVT Tool. For more information about a particular BRE 500: Special Topic course please Contact Training .
Prerequisites:
- None
Agenda
Introduction
- ProMax refresher
Gas Gathering System Simulation & Network Modeling
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Building pipelines and gathering network models including wells, manifolds, compressors, and transmission pipelines
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Using the ProMax Pipeline block to calculate pressure drop, temperature profiles, velocity, and flow regime in single- and multi-phase pipelines
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Modeling horizontal, vertical, and inclined pipelines with multiple segments, fittings, and valves
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Predicting condensate dropout, liquid holdup, and solids formation along pipeline systems
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Evaluating heat transfer and environmental heat losses for above-ground, buried, or subsea pipelines
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Using the ProMax GIS Tool™ to construct gathering networks directly from GIS data and automatically generate flowsheets
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Performing sensitivity analysis on operating parameters such as compressor discharge pressure, wellhead pressure, and flow conditions
PVT Tools & Fluid Characterization
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Introduction to ProMax PVT Tool™ and its applications for reservoir fluid analysis
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Simulating standard laboratory PVT studies using reservoir fluid compositions from bottomhole samples or separator data
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Generating key PVT properties such as phase behavior, compressibility, and fluid properties used in production system modeling
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Fluid characterization workflows for gas and condensate systems
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EOS selection and tuning for improved fluid representation
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Case study demonstrating PVT analysis and its integration into gathering system simulations
