High Pressure High Temperature (HPHT) Flow Loop.

Описание к видео High Pressure High Temperature (HPHT) Flow Loop.

CPG-KFUPM - High Pressure High Temperature (HPHT - Multiphase) Flow Loop.

This video presents the High Pressure High Temperature (HPHT) Flow Loop at College of Petroleum Engineering & Geosciences (CPG) of King Fahd University of Petroleum & Minerals (KFUPM). This state-of-the-art research facility plays a vital role in advancing the understanding of multiphase flow in oil and gas reservoirs.

Reservoirs typically contain a complex mixture of fluids, including oil, gas, water, and solids. This intricate blend poses significant challenges in the oil and gas industry, leading to issues such as pipeline blockages, reduced flow rates, equipment damage, and safety hazards. These challenges can result in considerable financial losses annually.

The HPHT Flow Loop serves as a valuable tool for researchers to replicate real-world reservoir conditions with meticulous precision. By meticulously simulating these conditions, the loop enables researchers to:

Develop precise multiphase flow models: These models contribute significantly to optimizing pipeline management by predicting and mitigating potential flow-related issues.
Investigate the formation and deposition of solids: This research is crucial for addressing challenges like wax and hydrate buildup within pipelines, enhancing their longevity and efficiency.
Evaluate novel treatment solutions: The loop facilitates the testing and evaluation of innovative treatments designed to combat issues such as CO2 corrosion and safeguard pipelines.
Assess the efficacy of internal coatings: The HPHT Flow Loop allows researchers to evaluate the effectiveness of various internal pipeline coatings, enhancing protection against corrosion and erosion.

This video provides a comprehensive overview of the HPHT Flow Loop and its vital contribution to advancing knowledge and innovation within the oil and gas sector. It is a valuable resource for researchers, engineers, and professionals interested in reservoir engineering, multiphase flow dynamics, pipeline management, and sustainable energy solutions.

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