Open Physics (Jan 2016)

Experimental Investigation on Oil Enhancement Mechanism of Hot Water Injection in tight reservoirs

  • Yongmao Hao,
  • Mingjing Lu,
  • Chengshun Dong,
  • Jianpeng Jia,
  • Yuliang Su,
  • Guanglong Sheng

DOI
https://doi.org/10.1515/phys-2016-0079
Journal volume & issue
Vol. 14, no. 1
pp. 703 – 713

Abstract

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Aimed at enhancing the oil recovery of tight reservoirs, the mechanism of hot water flooding was studied in this paper. Experiments were conducted to investigate the influence of hot water injection on oil properties, and the interaction between rock and fluid, petrophysical property of the reservoirs. Results show that with the injected water temperature increasing, the oil/water viscosity ratio falls slightly in a tight reservoir which has little effect on oil recovery. Further it shows that the volume factor of oil increases significantly which can increase the formation energy and thus raise the formation pressure. At the same time, oil/water interfacial tension decreases slightly which has a positive effect on production though the reduction is not obvious. Meanwhile, the irreducible water saturation and the residual oil saturation are both reduced, the common percolation area of two phases is widened and the general shape of the curve improves. The threshold pressure gradient that crude oil starts to flow also decreases. It relates the power function to the temperature, which means it will be easier for oil production and water injection. Further the pore characteristics of reservoir rocks improves which leads to better water displacement. Based on the experimental results and influence of temperature on different aspects of hot water injection, the flow velocity expression of two-phase of oil and water after hot water injection in tight reservoirs is obtained.

Keywords