Harold Vance Department of Petroleum Engineering
Harold Vance Department of Petroleum Engineering
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Graduate program video for the Harold Vance Department of Petroleum Engineering
The graduate program of the Harold Vance Department of Petroleum Engineering at Texas A&M University is recognized for excellence in teaching and research, both nationally and internationally. We are consistently rated as one of the best graduate programs in Petroleum Engineering by U.S. News and World Report.
Our faculty research interests represent a broad spectrum of petroleum specialties, and we offer graduate degree programs and course work at both the Masters and Doctoral levels. Our Masters of Engineering program is offered online for those who want upgrade their education without setting foot in a classroom.
Want to know more? Email us at pe-grad_info@tamu.edu
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Відео

Gas Hydrate recrystallization: Yucel Akkutlu
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Dr. I. Yucel Akkutlu’s gas hydrate research is unlocking the role of hysteresis in hydrate recrystallization, allowing him to better model hydrate behavior, a critical step toward safely producing hydrates as a future energy resource for the world. More information can be found in this article: tx.ag/peGHRecrystal
Undergraduate research: Claire DeCuir
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Texas A&M University petroleum engineering student Claire DeCuir shares her interest in undergraduate research and why she feels it is important both academically and for real world applications.
Riser Gas Research: Preventing Tragedy
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Riser Gas Research: Preventing Tragedy
Inclined flow test number 2
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Second test of flow on an incline in drilling simulator Riser Diameter: 6 inches Drill Pipe Diameter: 2 inches Flow Loop Height: 27 feet Discharge Line Height: 7 feet Original video recording by Omer Kaldirim in the Texas A&M University Dual Gradient Drilling Lab.
Inclined Fill and lift test
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Test of the drilling simulator: fill on an incline. Riser Diameter: 6 inches Drill Pipe Diameter: 2 inches Flow Loop Height: 27 feet Discharge Line Height: 7 feet Original video recorded by Omer Kaldirim in the Texas A&M University Dual Gradient Drilling Lab.
Dual Gradient Drilling Riser Simulator Test 1 Part 3
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Dual Gradient Drilling Riser Simulator Test 1: Gas Migration while circulating. Flowrates Pump 1 45 hz 102 gpm Pump 2 35 hz 105 gpm Gas Flow Rate 0.5 SCFM TopFill Rate: 1.81 GPM Riser Inclination: 0 degrees from vertical Equipment Specifications: Riser Diameter: 6" Drill Pipe Diameter 2" Total Height: 27 ft Water Level 20 ft Discharge Height 7 ft Location: Texas A&M University Dual Gradient Dri...
Dual Gradient Drilling Riser Simulator Test 1 Part 2
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Dual Gradient Drilling Riser Simulator Test 1: Gas Migration while circulating. Flowrates Pump 1 50 hz 107 gpm Pump 2 40 hz 110 gpm Gas Flow Rate 0.5 SCFM TopFill Rate: 1.81 GPM Riser Inclination: 0 degrees from vertical Equipment Specifications: Riser Diameter: 6" Drill Pipe Diameter 2" Total Height: 27 ft Water Level 20 ft Discharge Height 7 ft Location: Texas A&M University Dual Gradient Dri...
Dual Gradient Drilling Riser Simulator Test 1 part 1
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Dual Gradient Drilling Riser Simulator Test 1: Gas Migration while circulating. Flowrates Pump 1 55 hz 110 gpm Pump 2 40 hz 115 gpm Gas Flow Rate 0.5 SCFM TopFill Rate: 1.81 GPM Riser Inclination: 0 degrees from vertical Location: Texas A&M University Dual Gradient Drilling Lab Originally published by Omer Kaldirim on Jun 8, 2015 to the TAMU Dual Gradient Drilling Lab channel.
Happy Holidays from Petroleum Engineering!
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Happy Holidays from Petroleum Engineering!
Undergraduate program video for Harold Vance Department of Petroleum Engineering
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The Harold Vance Department of Petroleum Engineering at Texas A&M University, is one of the top petroleum engineering departments in the U.S. Our award-winning, highly published faculty are dedicated to ensuring the highest quality of education to our students. Our curriculum gives every student a solid foundation in engineering fundamentals before moving to petroleum studies in reservoir engin...
Water-Wet Shale imbibed with surfactants
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Video shows a shale rock imbibed with a surfactant solution of water and soap. The contact angle of the drop of oil touching its surface is greater than 90 degrees so the oil is repelled, meaning this rock is water-wet. Footage courtesy of Dr. David Schechter of Texas A&M University.
Oil-Wet Shale
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Video shows a drop of crude oil on a needle touching the surface of shale rock. The contact angle is less than 90 degrees so the oil adheres to the surface. This means the oil within the shale rock attracts more oil, so it is oil-wet. Footage courtesy of Dr. David Schechter of Texas A&M University.