Advanced Gas Treatment
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For PEA Members Only
This workshop covers advanced concepts and technologies used in natural gas treatment to ensure product quality, process efficiency, and environmental compliance. Participants will gain practical insights into modern gas sweetening, dehydration, and contaminant removal methods applied across upstream and midstream operations.
Workshop Objectives
• Understand advanced processes for gas sweetening and dehydration.
• Learn about modern technologies for removing CO₂, H₂S, and other impurities.
• Evaluate process design considerations for optimal gas treatment performance.
• Review operational challenges and case examples from field applications.
About the Presenter
The workshop is conducted by a professional with experience in gas processing, plant operations, and process optimization. The presenter has a proven background in designing and implementing gas treatment solutions that enhance efficiency and meet industry standards across various operating conditions.
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For PEA Members Only
Modern Reservoir Characterization : Integrating Artificial Intelligence (AI) with Traditional Methods
During this workshop, participants will develop a more comprehensive grasp of the geophysical theory of seismic inversion and explore advanced seismic reservoir characterization techniques. Discover the essential steps in the seismic reservoir characterization workflow using machine learning, covering data processing to inversion analysis. Acquire valuable knowledge applicable to your everyday projects.In classical reservoir characterization, it is commonly assumed that the reservoir exhibits both elastic and hydraulic isotropy. However, real reservoirs often exhibit anisotropic characteristics and spatial heterogeneity on multiple scales. Relying solely on core and log data may not accurately represent the larger reservoir volume. Therefore, the most effective way to accurately analyze the physical properties of most actual reservoirs, across their entire volume, involves utilizing advanced machine learning methods for acquired and interpreted seismic data.