He Zhiyong, Hao Shisheng. SECONDARY MIGRATION AND ENTRAPMENT OF PETROLEUM UNDER HYDRODYNAMIC CONDITIONS[J]. 1987, 8(4): 402-411.DOI: 10.11743/ogg19870413.
Through the analysis of fluid potential distribution Under hydrodynamic conditions. this paper discusses the conditions for petroleum migration and entrapment. The angle of inclination of oil-water interface (α) is a function of the dipangle (θ) of the aquifer. which confines the water flow direction: tga=∂h
ω
/∂x/ρ
ω
-ρ
0
/ρ
ω
-ρh
∂
/∂x·tgθ (1)where ∂h
ω
/∂x is the horizontal component of water head gradient within theaquifer
and θ is the dip angle of the aquifer. In an anticlinal aquifer
the maximun height of the oil column perpendicular to the oil water interface is given by: Z
0
=(2σ[(1/γ
t
-1/γ
p
)]g·(ρ
ω
-ρ
0
))·√1+tg
2
α (2) where tgα can be obtained by solving equation (1)
assuming that α=θ.In an updip pinchout reservoir
the maximum height of oil column may be: Z
0
=(2σ|(1/γ
t
-1/γ
p
|)/(g·(ρ
ω
-ρ
0
)-(∂h
ω
/∂x)·(ρ
ω
·g/cosθ·sinθ)) (3) A F function is derived to determine the direction of oil and gas migrationin a monoclinal aquifer with a downdip flow:F=∂h
ω
/∂x-ρ
ω
-ρ
0
/ρ
ω
·sinθ·cosθ (4)A hydrocarbon globule will migrate updip when F is negative. It will be flushed down the dip if F is positive. It is concluded that without the closure of structure and lithological variation
hydrodynamic factor alone can not trap hydrocarbons.