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  • THERMOFLEX TUBING FOR OIL and GAS

THERMOFLEX TUBING FOR OIL and GAS

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06 / 12 / 2019
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Detail THERMOFLEX TUBING FOR OIL And GAS

THERMOFLEX THERMOFLEX TUBING The Most Versatile Piping For Oil and Gas Solution Composite Piping design for the Oilfield Rapid, Easy, Low-Cost Installation Technical Support form Design throught Installation Made by PolyFlow Inc. USA Multi-layer Design Material selection designed to meet application needs Aramid fiber designed to meet application needs Inner Layer for corrosion resistance, low permeation and higher temp strength - Nylon and Fortron Outer layer for higher temperature strength and abrasion resistance Fully Bonded Applications to 250oF ( 120oC) Abrasion resistant outer jacket ( polypropylene or nylon, depending on chemical/ temperature environment) Aramid fiber braid to provide strength Intermediate layer provides stiffness, crush and kink resistance. Can be polypropylene or nylon, depending on chemical / temperature environment ( bonded to inner liner) Inner liner is barrier layer ( Nylon for gas, oil, condensate, CO2) ; ( Fortron for H2S and high temperature) Rated Pressure: up to 3000 psi, 172 bar Depending on pipe diameter Rated pressure up to 4500 psi on special request Braid design strength: 2X rated pressure Max. pull force: 10, 000 lbs ( 4500kg) Fully Bonded Applications to 250oF ( 120oC) Available diameters: 1” to 6” ( spoolable limitation) Coil lengths: 1000 – 24, 000’ ( dependent on tube diameter) Chemical compatibility: oil, gas, condensates, CO2, H2S, brine, water. No adherence of paraffin with FORTRON liner Coupling materials: zinc chromate plated carbon steel ( 1026) or Duplex stainless steel ( 2205) Higher pressure gathering lines Higher pressure injection lines Pulling through old steel pipe Brine disposal lines Lines with high H2S levels ( 200ppm+ ) Lines with high CO2 levels Lines with paraffin or scale buildup issues Low pressure wells ( liquid loading issues) Elimination of corrosion issues / hydrocarbon resistance Reduced installation costs / installation time Minimizes buildup of paraffin, asphaltenes & scales Reduced pressure drop with respect to steel Improved total life-cycle cost Reduced Surface Roughness of Engineered Plastics vs. Steel Steel Relative Roughness .005 Thermoflex ® Relative Roughness .00005 Results in less drag and better flow rates/ productivity Thermal Insulation Properties of Plastic vs. Steel . . . 3.1 BTUin/ hrft2F for Plastic vs. 360 for Steel Material Compatibility of Polymers . . . Enhanced Corrosion Resistance Minimizes Buildups API-15S: Qualification of Spoolable Reinforced Plastic Line Pipe Testing Reference Standards ASTM 1598-86, 2105-01, 1599-88 ASTM D3350, D2296, D2513 ASTM D2122 Bureau Veritas US to Shell Int. 2005 “ Spoolable Fibre-Reinforced Plastic Pipes” Supported by ; PT EP ENERGI & SCG
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