Friction flow loop test method and apparatus
The present invention comprises a friction flow loop test method and apparatus that simulates well bore hydraulic conditions during fracturing utilizing large dual tanks with a primary feed tank and a secondary receiving tank wherein friction reducer hydration is controlled in an environment matching the well bore and is unaffected by recirculation mixing.
1. A system to simulate well bore hydraulic conditions for determining associated affects friction reducers have on fluids over a wide range of pressures and flow rate conditions for optimal results during fracturing comprising: a primary feed tank having a conical bottom adapted to store and dispense said fluids; a mixing assembly connected below said primary tank and adapted to receive said fluids, and said friction reducers from a syringe pump for mixing with a propeller; a variable pump connected to said mixing assembly and adapted to pass mixed said fluids and said friction reducers; a computer; a first loop adapted to pass mixed said fluids and said friction reducers from said variable pump to a first differential pressure sensor and adapted to determine a first pressure differential between said variable pump and said first differential pressure sensor; a second loop adapted to pass mixed said fluids and said friction reducers from said variable pump to a second differential pressure sensor and adapted to determine a second pressure differential between said variable pump and said second differential pressure sensor; a third loop adapted to pass mixed said fluids and said friction reducers from said variable pump to a third differential pressure sensor and adapted to determine a third pressure differential between said variable pump and said third differential pressure sensor; wherein said variable pump, said first differential pressure sensor, second differential pressure sensor, and said third differential pressure sensor, and said a mixing assembly are in communication with said computer; wherein said first differential pressure sensor, said second differential pressure sensor, and said third differential pressure sensor are connected to a secondary receiving tank having a conical bottom and a spill over line to said primary feed tank; and said system is adapted to provide adjustable shear rates that range from 500 to 6000 reciprocal seconds without said fluids recirculation back to said primary tank.