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Wavefront Technology Solutions Inc V.WEE.H

Alternate Symbol(s):  WFTSF

Wavefront Technology Solutions Inc. is engaged in the advancement of dynamic fluid injection technology for oil and gas well stimulation and improved/enhanced oil (IOR/EOR) recovery. Through its Powerwave technology, it provides the oil and gas industry to place fluids into the reservoir. The dynamic action of Powerwave’s fluid pulses diverts injected fluids away from established flow paths, achieving better fluid distribution. Its patented Powerwave process is an injection technology that improves the flow of fluids in geological materials, including sedimentary soils and fractured rock. These materials are composed of a solid matrix and pore structure, which contain fluids such as oil and gas. The Primawave process is a method for aiding in-ground environmental remediation clean-up strategies in contaminated sites. Primawave provides the environmental sector with a solution for aiding in the clean-up of contaminated sites. It deals directly with exploration and production companies.


TSXV:WEE.H - Post by User

Post by mrtnreaon Apr 04, 2011 11:29pm
221 Views
Post# 18385059

Other Primawave study

Other Primawave studyhttps://onlinelibrary.wiley.com/doi/10.1002/rem.20282/abstract?systemMessage=Wiley+Online+Library+will+be+disrupted+2nd+Apr+from+10-12+BST+for+monthly+maintenance

Pressure-pulse injection tools are widely used in the oil and gas extraction industry to increase well production yields; however, they have been sparingly used in the environmental industry. These injection tools work by applying a pressure pulse to the subsurface that can open subsurface pore throats in unconsolidated material, increasing yields or increasing a radius of influence from a substrate injection. Collection trenches at an industrial site were installed to increase recovery of No. 2 fuel oil in the subsurface and maintain hydraulic control of the contaminant plume. However, after operating for seven years, significant reduction in recovery was observed. Diminished recovery was attributed to biofouling, iron fouling, and/or excessive scaling. A pilot test was conducted in 2009 to determine if a pressure-pulse injection tool could be used to inject an antifouling agent and rehabilitate two of the site collection trenches. The pilot test was successful in increasing the transmissivity of both trenches, with an order-of-magnitude increase in groundwater recovery at Collection Trench 1 and a 50 percent increase in recovery at Collection Trench 2. The trench rehabilitation using the pressure-pulse injection tool was conducted at two other site collection trenches in 2010 with similar success and is now proposed as part of regular maintenance of the trenches on an as-needed basis. © 2011 Wiley Periodicals, Inc.



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