1. Superb drag reduction, lowering construction pressure.
It boasts extremely high drag reduction performance, capable of significantly reducing the frictional force between fracturing fluid and the inner walls of pipelines as well as the walls of formation fractures. During fracturing operations, it effectively reduces pumping pressure, lowers the load requirements on construction equipment, minimizes equipment wear, and enables smoother transportation of fracturing fluid to target formations, thereby improving construction efficiency.
2. Rapid dispersion and dissolution, saving operation time.
It disperses and dissolves at an extremely fast rate. When mixed with fracturing fluid, it can quickly and evenly disperse, exerting drag reduction effects promptly. No prolonged stirring or waiting is needed, which greatly shortens the preparation time before construction, allows fracturing operations to start faster, accelerates the overall construction progress, and meets the needs of emergency or large-scale construction.
3. Low formation damage, protecting oil and gas reservoirs.
It causes minimal damage to formations. During fracturing, it does not chemically react with formation rocks or fluids, nor does it block formation pores. This effectively protects the permeability and original structure of oil and gas reservoirs, creates favorable conditions for subsequent oil and gas extraction, and ensures the long-term high and stable production of oil and gas wells.
4. Easy flowback, reducing residual risks.
It has excellent flowback performance. After the completion of fracturing operations, it can be smoothly discharged from the formation along with the fracturing fluid, reducing underground residues. This avoids secondary pollution or blockage of the formation caused by residual substances, lowers the difficulty of subsequent operations, and improves operational safety and environmental friendliness.