4.6 Article

New water drive characteristic curves at ultra-high water cut stage

Journal

PETROLEUM EXPLORATION AND DEVELOPMENT
Volume 44, Issue 6, Pages 1010-1015

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/S1876-3804(17)30113-1

Keywords

water flooding development; ultra-high water cut stage; water drive characteristic curve; recoverable reserves

Funding

  1. China National Science and Technology Major Project [2016ZX05010-003]
  2. Petrochina Science and Technology Major Project [2016B-1202]

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A function expression of the oil-water relative permeability ratio with normalized water saturation at high water saturation was proposed based on statistics of measured oil-water relative permeability data in oilfields. This expression fits the later section of conventional relative permeability ratio curve more accurately. Two new water drive characteristic curves at the ultra-high water cut stage (f(w)>90%) were derived by combining the new oil-water relative permeability ratio expression and reservoir engineering method. Then, the numerical simulation results of five-point well pattern and production data of Yangerzhuang Oilfield and Liuzan Oilfield were used to verify the adaptability of the new water drive characteristic curves. The results showed that the new water drive characteristic curves are more accurate than conventional water drive characteristic curves after A type and B type water drive curves rise, and can be used to predict production performance at ultra-high water cut stage, ultimate recovery efficiency and recoverable reserves.

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